7.1.7 Transport block size selection

36.523-13GPPEvolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Packet Core (EPC)Part 1: Protocol conformance specificationRelease 17TSUser Equipment (UE) conformance specification

7.1.7.0 Specific configurations

The configurations defined in table 7.1.7.0-1 is used after step 7 of table 4.5.3.3-1 [18] in the preamble and in all steps in the main behaviour of the test cases in clause 7.1.7.

Table 7.1.7.0-1: Power allocation for OFDM symbols and reference signals, single SS Tx antenna

Physical Channel

EPRE Ratio

Comment

PBCH

PBCH_RA = 0 dB

PBCH_RB = 0 dB

PSS

PSS_RA = 0 dB

SSS

SSS_RA = 0 dB

PCFICH

PCFICH_RB = 0 dB

PDCCH

PDCCH_RA = 0 dB

PDCCH_RB = 0 dB

PDSCH

PDSCH_RA = 0 dB

PDSCH_RB = 0 dB

PHICH

PHICH_RB = 0 dB

The configurations defined in table 7.1.7.0-2 is used in step 8 of table 4.5.3.3-1 [18] in the preamble of the test cases in clause 7.1.7.

Table 7.1.7.0-2: PDSCH-ConfigDedicated-DEFAULT

Derivation Path: 36.508 Table 4.6.3-6

Information Element

Value/remark

Comment

Condition

PDSCH-ConfigDedicated-DEFAULT ::= SEQUENCE {

p-a

dB0

1TX

dB-3

2TX

}

7.1.7.1 DL-SCH transport block size selection

7.1.7.1.1 DL-SCH transport block size selection / DCI format 1 / RA type 0

7.1.7.1.1.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on PDCCH receives DCI format 1 indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.1.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.2; TS 36.213, clauses 7.1.6.1, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

DCI format 1 is used for the scheduling of one PDSCH codeword.

The following information is transmitted by means of the DCI format 1:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]:

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6 of [3]

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1.

If the number of information bits in format 1 belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1 until the payload size of format 1 does not belong to one of the sizes in Table 5.3.3.1.2-1 and not equal to that of format 0/1A.

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the resource block groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive physical resource blocks (PRBs). Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of PRBs is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 Resource Allocation RBG Size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

  • read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

  • set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

Modulation Order

TBS Index

0

2

2

0

1

2

2

2

2

2

2

4

3

2

4

6

4

2

4

8

5

4

6

10

6

4

6

11

7

4

6

12

8

4

6

13

9

4

6

14

10

4

8

15

11

6

8

16

12

6

8

17

13

6

8

18

14

6

8

19

15

6

8

20

16

6

8

21

17

6

8

22

18

6

8

23

19

6

8

24

20

8

8

25

21

8

8

27

22

8

8

28

23

8

8

29

24

8

8

30

25

8

8

31

26

8

8

32

27

8

8

33/33A/33B

28

2

2

reserved

29

4

4

30

6

6

31

8

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.

– In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.1.3 Test description

7.1.7.1.1.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.1.3.2 Test procedure sequence

Table 7.1.7.1.1.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 0

1000

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.1.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤ 12096 note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤ 24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤ 48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤ 60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

TBsize> 72240

7

8*FLOOR((TBsize – 264)/56)

Note 1. Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 + 16bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.1.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.1.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.1.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.1.3.2-2a and from 0 to 28.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.1.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.1.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.1.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1 with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1 by the SS.

If the number of information bits in format 1 belongs to one of the sizes in Table 7.1.7.1.1.3.2-2b, one or more zero bit(s) shall be appended to format 1 by the SS until the payload size of format 1 does not belong to one of the sizes in Table 7.1.7.1.1.3.2-2b and not equal to that of format 0/1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1, RA type 0, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.1.3.3 Specific Message Contents

Table 7.1.7.1.1.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.1.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

}

}

}

}

}

}

7.1.7.1.2 DL-SCH transport block size selection / DCI format 1 / RA type 1

7.1.7.1.2.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on PDCCH receives DCI format 1 indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.2.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.2; TS 36.213, clauses 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

DCI format 1 is used for the scheduling of one PDSCH codeword.

The following information is transmitted by means of the DCI format 1:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 1 as defined in section 7.1.6.2 of [3]:

bits of this field are used as a header specific to this resource allocation type to indicate the selected resource blocks subset

– 1 bit indicates a shift of the resource allocation span

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6 of [3]

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1.

If the number of information bits in format 1 belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1 until the payload size of format 1 does not belong to one of the sizes in Table 5.3.3.1.2-1 and not equal to that of format 0/1A.

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the PRBs from the set of PRBs from one of P RBG subsets. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single PRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the PRBs in the increasing frequency order. The PRB is allocated to the UE if the corresponding bit value in the bit field is 1, the PRB is not allocated to the UE otherwise. The portion of the bitmap used to address PRBs in a selected RBG subset has size and is defined as

The addressable PRB numbers of a selected RBG subset start from an offset, to the smallest PRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of PRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest PRB number within the selected RBG subset. is the number of PRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates PRB number,

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

  • read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

  • set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

  • for DCI format 1A:
    • the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

  • for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.
  • for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.
  • In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

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59

60

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37888

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42368

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61

62

63

64

65

66

67

68

69

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1672

1736

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1800

1800

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1864

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4

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45352

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48936

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71

72

73

74

75

76

77

78

79

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0

1992

1992

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2088

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2600

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3240

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5544

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5

6200

6200

6456

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6712

6712

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6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.306 clause 4.1]

The field ue-Category parameter defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

Note 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.2.3 Test description

7.1.7.1.2.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.2.3.2 Test procedure sequence

Table 7.1.7.1.2.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 0

1000

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.2.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096

note 2

1

8*FLOOR((TBsize 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

TBsize> 72240

7

8*FLOOR((TBsize – 264)/56)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and
MAC header size = 40 bits as MAC header can be

R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU) +R/R/E/LCID MAC subheader (8 bits for MAC SDU for AMD PDU) = 8 + 16+ 8 bits = 32 bits
OR
R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be 2 bytes depending on the size of AMD PDU) +R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) = 8 + 24+ 8 bits = 40 bits
Therefore maximum MAC header size can be 40 bits
Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.2.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

5 MHz

25

11

10 MHz

50

14

15 MHz

75

16

20 MHz

100

22

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.2.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.2.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 4 are repeated for values of from 1 to as per table 7.1.7.1.2.3.2-2a and from 0 to 28.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.2.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.2.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.2.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1 with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.2 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1 by the SS.

If the number of information bits in format 1 belongs to one of the sizes in Table 7.1.7.1.2.3.2-2b, one or more zero bit(s) shall be appended to format 1 by the SS until the payload size of format 1 does not belong to one of the sizes in Table 7.1.7.1.2.3.2-2b and not equal to that of format 0/1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1, RA type 1, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.2.3.3 Specific Message Contents

Table 7.1.7.1.2.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.2.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

}

}

}

}

}

}

7.1.7.1.3 DL-SCH transport block size selection / DCI format 1A / RA type 2 / Localised VRB

7.1.7.1.3.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on PDCCH receives DCI format 1A indicating Resource Allocation Type 2 with Localized VRB, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.3.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2 and 5.3.3.1.3; TS 36.213, clauses 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.3]

DCI format 1A is used for the compact scheduling of one PDSCH codeword and random access procedure initiated by a PDCCH order.

The following information is transmitted by means of the DCI format 1A:

– Flag for format0/format1A differentiation – 1 bit, where value 0 indicates format 0 and value 1 indicates format 1A

Otherwise,

– Localized/Distributed VRB assignment flag – 1 bit as defined in 7.1.6.3 of [3]

– Resource block assignment – bits as defined in section 7.1.6.3 of [3]:

– For localized VRB:

bits provide the resource allocation

– For distributed VRB:

– If or if the format 1A CRC is scrambled by RA-RNTI, P-RNTI, or SI-RNTI

bits provide the resource allocation

– Else

– 1 bit, the MSB indicates the gap value, where value 0 indicates and value 1 indicates

bits provide the resource allocation

– Modulation and coding scheme – 5bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1A is less than that of format 0, zeros shall be appended to format 1A until the payload size equals that of format 0.

If the number of information bits in format 1A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 1A.

[TS 36.213 clause 7.1.6.3]

In resource allocations of type 2, the resource block assignment information indicates to a scheduled UE a set of contiguously allocated localized virtual resource blocks or distributed virtual resource blocks. In case of resource allocation signalled with PDCCH DCI format 1A, 1B or 1D, one bit flag indicates whether localized virtual resource blocks or distributed virtual resource blocks are assigned (value 0 indicates Localized and value 1 indicates Distributed VRB assignment) while distributed virtual resource blocks are always assigned in case of resource allocation signalled with PDCCH DCI format 1C. Localized VRB allocations for a UE vary from a single VRB up to a maximum number of VRBs spanning the system bandwidth. For DCI format 1A the distributed VRB allocations for a UE vary from a single VRB up to VRBs, where is defined in [3], if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI. With PDCCH DCI format 1B, 1D, or 1A with a CRC scrambled with C-RNTI, distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With PDCCH DCI format 1C, distributed VRB allocations for a UE vary from VRB(s) up to VRBs with an increment step of , where value is determined depending on the downlink system bandwidth as shown in Table 7.1.6.3-1.

Table 7.1.6.3-1: values vs. Downlink System Bandwidth

System BW ()

DCI format 1C

6-49

2

50-110

4

For PDCCH DCI format 1A, 1B or 1D, a type 2 resource allocation field consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of virtually contiguously allocated resource blocks. The resource indication value is defined by

if then

else

where≥ 1 and shall not exceed .

For PDCCH DCI format 1C, a type 2 resource block assignment field consists of a resource indication value (RIV) corresponding to a starting resource block (=, , ,…, ) and a length in terms of virtually contiguously allocated resource blocks (=, ,…, ). The resource indication value is defined by

if then

else

where , and . Here,

≥ 1 and shall not exceed .

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

  • read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

  • set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

  • for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.
  • for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.
  • In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

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26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

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52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

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39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

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51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

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25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

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8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

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10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

Note 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.3.3 Test description

7.1.7.1.3.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.3.3.2 Test procedure sequence

Table 7.1.7.1.3.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 0

1000

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.3.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096

note 2

1

8*FLOOR((TBsize 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

TBsize> 72240

7

8*FLOOR((TBsize – 264)/56)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size -AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header can be

R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU) + R/R/E/LCID MAC subheader (8 bits for MAC SDU for AMD PDU) = 8 + 16+ 8 bits = 32 bits

Or

R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be 2 bytes depending on the size of AMD PDU) +R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) = 8 + 24+ 8 bits = 40 bits

Therefore maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits.

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.3.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

5 MHz

25

10 MHz

50

15 MHz

75

20 MHz

100

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.3.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.3.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 4 are repeated for values of from 1 to Max as per table 7.1.7.1.3.3.2-2a and from 0 to 28.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.3.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.3.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.3.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1A with RA type 2 using Localized VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1A is less than that of format 0, zeros shall be appended by the SS to format 1A until the payload size equals that of format 0.

If the number of information bits in format 1A belongs to one of the sizes in Table 7.1.7.1.3.3.2-2b, one zero bit shall be appended by the SS to format 1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1A, RA type 2, Localized/Distributed VRB assignment flag =’0’, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.3.3.3 Specific Message Contents

Table 7.1.7.1.3.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.3.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

accessStratumRelease

Any allowed value

ue-Category

Checked against UE Category indications in the PICS

pdcp-Parameters

Any allowed value

phyLayerParameters

Any allowed value

rf-Parameters

Any allowed value

measParameters

Any allowed value

featureGroupIndicators

Any allowed value

interRAT-Parameters

Any allowed value

nonCriticalExtension

Any allowed value

}

}

}

}

}

}

7.1.7.1.4 DL-SCH transport block size selection / DCI format 1A / RA type 2 / Distributed VRB

7.1.7.1.4.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on PDCCH receives DCI format 1A indicating Resource Allocation Type 2 with Distributed VRB, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.4.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2 and 5.3.3.1.3; TS 36.213, clauses 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.3]

DCI format 1A is used for the compact scheduling of one PDSCH codeword and random access procedure initiated by a PDCCH order.

The following information is transmitted by means of the DCI format 1A:

– Flag for format0/format1A differentiation – 1 bit, where value 0 indicates format 0 and value 1 indicates format 1A

Otherwise,

– Localized/Distributed VRB assignment flag – 1 bit as defined in 7.1.6.3 of [3]

– Resource block assignment – bits as defined in section 7.1.6.3 of [3]:

– For localized VRB:

bits provide the resource allocation

– For distributed VRB:

– If or if the format 1A CRC is scrambled by RA-RNTI, P-RNTI, or SI-RNTI

bits provide the resource allocation

– Else

– 1 bit, the MSB indicates the gap value, where value 0 indicates and value 1 indicates

bits provide the resource allocation

– Modulation and coding scheme – 5bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1A is less than that of format 0, zeros shall be appended to format 1A until the payload size equals that of format 0.

If the number of information bits in format 1A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 1A.

[TS 36.213 clause 7.1.6.3]

In resource allocations of type 2, the resource block assignment information indicates to a scheduled UE a set of contiguously allocated localized virtual resource blocks or distributed virtual resource blocks. In case of resource allocation signalled with PDCCH DCI format 1A, 1B or 1D, one bit flag indicates whether localized virtual resource blocks or distributed virtual resource blocks are assigned (value 0 indicates Localized and value 1 indicates Distributed VRB assignment) while distributed virtual resource blocks are always assigned in case of resource allocation signalled with PDCCH DCI format 1C. Localized VRB allocations for a UE vary from a single VRB up to a maximum number of VRBs spanning the system bandwidth. For DCI format 1A the distributed VRB allocations for a UE vary from a single VRB up to VRBs, where is defined in [3], if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI. With PDCCH DCI format 1B, 1D, or 1A with a CRC scrambled with C-RNTI, distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With PDCCH DCI format 1C, distributed VRB allocations for a UE vary from VRB(s) up to VRBs with an increment step of , where value is determined depending on the downlink system bandwidth as shown in Table 7.1.6.3-1.

Table 7.1.6.3-1: values vs. Downlink System Bandwidth

System BW ()

DCI format 1C

6-49

2

50-110

4

For PDCCH DCI format 1A, 1B or 1D, a type 2 resource allocation field consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of virtually contiguously allocated resource blocks. The resource indication value is defined by

if then

else

where≥ 1 and shall not exceed .

For PDCCH DCI format 1C, a type 2 resource block assignment field consists of a resource indication value (RIV) corresponding to a starting resource block (=, , ,…, ) and a length in terms of virtually contiguously allocated resource blocks (=, ,…, ). The resource indication value is defined by

if then

else

where , and . Here,

≥ 1 and shall not exceed .

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

  • read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

  • set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.

– In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

Note 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.4.3 Test description

7.1.7.1.4.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

– DCI format 1C shall be used for BCCH, PCH and RAR (note).

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

NOTE: To maximize resources for DL-SCH TB size testing for DCI format 1A/RA type 2/Distributed VRB then the SS need to use DCI Format 1C for BCCH, PCH and RAR

7.1.7.1.4.3.2 Test procedure sequence

Table 7.1.7.1.4.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 0

1000

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.4.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096

note 2

1

8*FLOOR((TBsize 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

TBsize> 72240

7

8*FLOOR((TBsize – 264)/56)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header can be
R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU) + R/R/E/LCID MAC subheader (8 bits for MAC SDU for AMD PDU) = 8 + 16 + 8 bits = 32 bits
OR
R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be 2 bytes depending on the size of AMD PDU) +R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) = 8 + 24+ 8 bits = 40 bits

Therefore maximum MAC header size can be 40 bits
Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits.

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.4.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

MAX VRB

5 MHz

25

24

10 Mhz

50

16

15 Mhz

75

16

20 Mhz

100

16

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.4.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.4.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 4 are repeated for values of from 1 to 16[MAX VRB] and from 0 to 28.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.4.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.4.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7 is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.4.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1A with RA type 2 using Distributed VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1A is less than that of format 0, zeros shall be appended by the SS to format 1A until the payload size equals that of format 0.

If the number of information bits in format 1A belongs to one of the sizes in Table 7.1.7.1.4.3.2-2b, one zero bit shall be appended by the SS to format 1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1A, RA type 2, Localized/Distributed VRB assignment flag =’1’, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.4.3.3 Specific Message Contents

Table 7.1.7.1.4.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.4.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

}

}

}

}

}

}

7.1.7.1.5 DL-SCH transport block size selection / DCI format 2A / RA type 0 / Two transport blocks enabled / Transport block to codeword swap flag value set to ’0’

7.1.7.1.5.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’0’ and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport blocks of sizes correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.5.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2, 5.3.3.1.5 and 5.3.3.1.5A; TS 36.213, clauses 7.1.6.1, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.1 and 7.1.7.2.2; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.5]

Table 5.3.3.1.5-1: Transport block to codeword mapping
(two transport blocks enabled)

transport block
to codeword
swap flag value

codeword 0
(enabled)

codeword 1
(enabled)

0

transport block 1

transport block 2

1

transport block 2

transport block 1

Table 5.3.3.1.5-2: Transport block to codeword mapping
(one transport block enabled)

Transport block 1

transport block 2

codeword 0
(enabled)

codeword 1
(disabled)

enabled

disabled

transport block 1

disabled

enabled

transport block 2

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in subclause [7.1.6.1] of [3]

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

Precoding information – number of bits as specified in Table 5.3.3.1.5A-1

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑1.

In case one of the transport blocks is disabled, the transport block to codeword swap flag is reserved and the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑2.

The precoding information field is defined according to Table 5.3.3.1.5A‑2. For a single enabled codeword, index 1 in Table 5.3.3.1.5A-2 is only supported for retransmission of the corresponding transport block if that transport block has previously been transmitted using two layers with open-loop spatial multiplexing.

For transmission with 2 antenna ports, the precoding information field is not present. The number of transmission layers is equal to 2 if both codewords are enabled; transmit diversity is used if codeword 0 is enabled while codeword 1 is disabled.

If the number of information bits in format 2A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

Table 5.3.3.1.5A-1: Number of bits for precoding information

Number of antenna ports at eNodeB

Number of bits for precoding information

2

0

4

2

Table 5.3.3.1.5A-2: Content of precoding information field for 4 antenna ports

One codeword:

Codeword 0 enabled,

Codeword 1 disabled

Two codewords:

Codeword 0 enabled,

Codeword 1 enabled

Bit field mapped to index

Message

Bit field mapped to index

Message

0

4 layers: Transmit diversity

0

2 layers: precoder cycling with large delay CDD

1

2 layers: precoder cycling with large delay CDD

1

3 layers: precoder cycling with large delay CDD

2

reserved

2

4 layers: precoder cycling with large delay CDD

3

reserved

3

reserved

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the resource block groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive physical resource blocks (PRBs). Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of PRBs is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 Resource Allocation RBG Size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.

– In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

Note 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.5.3 Test description

7.1.7.1.5.3.1 Pre-test conditions

System Simulator

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble

– The UE is in state Loopback Activated (state 4) according to [18] condition 2TX to configure MIMO.

7.1.7.1.5.3.2 Test procedure sequence

Table 7.1.7.1.5.3.2-1: Maximum TBsize for different UE categories

UE Category

(Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.5.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72))

10

8*FLOOR((TBsize – 376/80))

11

8*FLOOR((TBsize – 400/88))

12

8*FLOOR((TBsize – 432/96))

13

8*FLOOR((TBsize – 456)/104)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.5.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.5.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.5.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.5.3.2-2a and for each from 0 to 28

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

The SS uses the same and TBsize for both transport blocks:

= =

TBsize#1 = TBsize#2= TBsize

EXCEPTION: Steps 2 to 4 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.5.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.5.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs fo and 4.1Ar transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.5.3.2-2.

3

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme for transport block 1 and for transport block 2. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 0, RBA(), , )

3a

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

( N x PDCP SDUs)

1

P

7.1.7.1.5.3.3 Specific Message Contents

Table 7.1.7.1.5.3.3-1: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

}

}

}

}

}

}

7.1.7.1.6 DL-SCH transport block size selection / DCI format 2A / RA type 1 / Two transport blocks enabled / Transport block to codeword swap flag value set to ’1’

7.1.7.1.6.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’1’ and a modulation and coding scheme for two transport blocks }

then { UE decodes the two transport blocks of sizes correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.6.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2, 5.3.3.1.5 and 5.3.3.1.5A; TS 36.213, clauses 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.1 and 7.1.7.2.2; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.5]

Table 5.3.3.1.5-1: Transport block to codeword mapping
(two transport blocks enabled)

transport block
to codeword
swap flag value

codeword 0
(enabled)

codeword 1
(enabled)

0

transport block 1

transport block 2

1

transport block 2

transport block 1

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 1 as defined in section 7.1.6.2 of [3]

bits of this field are used as a header specific to this resource allocation type to indicate the selected resource blocks subset

– 1 bit indicates a shift of the resource allocation span

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in subclause [7.1.6.1] of [3]

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑1.

If the number of information bits in format 2A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the VRBs from the set of VRBs from one of P RBG subsets. The virtual resource blocks used are of localized type as defined in subclause 6.2.3.1 of [3]. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single VRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the VRBs in the increasing frequency order. The VRB is allocated to the UE if the corresponding bit value in the bit field is 1, the VRB is not allocated to the UE otherwise. The portion of the bitmap used to address VRBs in a selected RBG subset has size and is defined as

The addressable VRB numbers of a selected RBG subset start from an offset, to the smallest VRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of VRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest VRB number within the selected RBG subset. is the number of VRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates VRB number,

.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.930, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in Section 7.1.7.2.1.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2 and 2A as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Section 7.1.7.2.2.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH for the same transport block using . If there is no latest PDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH.

– In DCI formats 2 and 2A a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

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48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

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39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by "Maximum number of DL-SCH transport block bits received within a TTI" of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.6.3 Test description

7.1.7.1.6.3.1 Pre-test conditions

System Simulator

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble

– The UE is in state Loopback Activated (state 4) according to [18] condition 2TX to configure MIMO.

7.1.7.1.6.3.2 Test procedure sequence

Table 7.1.7.1.6.3.2-1: Maximum TBsize for different UE categories

UE Category

(Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 1bis

10296

Category 1

10296

Category 2

51024

Category 3

75376

Category 4

75376

Category 5

149776

Category 6

149776

Category 7

149776

Category 8

299856

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 13

195816

Category 14

391656

Category 15

149776

Category 16

149776

Category 17

391656

Category 18

299856

Category 19

299856

Category 20

299856

Category 21

149776

Table 7.1.7.1.6.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72)

10

8*FLOOR((TBsize – 376)/80)

11

8*FLOOR((TBsize – 400)/88)

12

8*FLOOR((TBsize – 432)/96)

13

8*FLOOR((TBsize – 456)/104)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.6.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.6.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.6.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.6.3.2-2a and for each from 0 to 28

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

The SS uses the same and TBsize for both transport blocks:

= =

TBsize#1 = TBsize#2= TBsize

EXCEPTION: Steps 2 to 4 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.6.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.6.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1 and TBsize#2, in accordance with Table 7.1.7.1.6.3.2-2.

3

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213, transport block to codeword swap flag value set to ’1’ and modulation and coding scheme for transport block 1 and for transport block 2. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 1, RBA(), Transport block to codeword swap flag value set to=’1’, , )

3a

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

( N1 x PDCP SDUs,

N2 x PDCP SDUs)

1

P

7.1.7.1.6.3.3 Specific Message Contents

Table 7.1.7.1.6.3.3-1: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

}

}

}

}

}

}

7.1.7.1.6a DL-SCH transport block size selection / DCI format 2A / RA type 0 and RA type 1 / Two transport blocks enabled / 3 and 4 Layer Spatial Multiplexing

7.1.7.1.6a.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’0’, the Precoding information set to ’1’ for 3 Layers spatial multiplexing and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport blocks of sizes correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

(2)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’1’, the Precoding information set to ’2’ for 4 Layers spatial multiplexing and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport blocks of sizes correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.6a.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2, 5.3.3.1.5 and 5.3.3.1.5A; TS 36.213, clauses 7.1.6.1, 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.1 and 7.1.7.2.2; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.5]

Table 5.3.3.1.5-1: Transport block to codeword mapping
(two transport blocks enabled)

transport block
to codeword
swap flag value

codeword 0
(enabled)

codeword 1
(enabled)

0

transport block 1

transport block 2

1

transport block 2

transport block 1

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in subclause [7.1.6.1] of [3]

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

Precoding information – number of bits as specified in Table 5.3.3.1.5A-1

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5-1.

In case one of the transport blocks is disabled, the transport block to codeword swap flag is reserved and the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑2.

The precoding information field is defined according to Table 5.3.3.1.5A‑2. For a single enabled codeword, index 1 in Table 5.3.3.1.5A-2 is only supported for retransmission of the corresponding transport block if that transport block has previously been transmitted using two layers with open-loop spatial multiplexing.

For transmission with 2 antenna ports, the precoding information field is not present. The number of transmission layers is equal to 2 if both codewords are enabled; transmit diversity is used if codeword 0 is enabled while codeword 1 is disabled.

If the number of information bits in format 2A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

Table 5.3.3.1.5A-1: Number of bits for precoding information

Number of antenna ports at eNodeB

Number of bits for precoding information

2

0

4

2

Table 5.3.3.1.5A-2: Content of precoding information field for 4 antenna ports

One codeword:

Codeword 0 enabled,

Codeword 1 disabled

Two codewords:

Codeword 0 enabled,

Codeword 1 enabled

Bit field mapped to index

Message

Bit field mapped to index

Message

0

4 layers: Transmit diversity

0

2 layers: precoder cycling with large delay CDD

1

2 layers: precoder cycling with large delay CDD

1

3 layers: precoder cycling with large delay CDD

2

reserved

2

4 layers: precoder cycling with large delay CDD

3

reserved

3

reserved

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the resource block groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive physical resource blocks (PRBs). Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of PRBs is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 Resource Allocation RBG Size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the VRBs from the set of VRBs from one of P RBG subsets. The virtual resource blocks used are of localized type as defined in subclause 6.2.3.1 of [3]. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single VRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the VRBs in the increasing frequency order. The VRB is allocated to the UE if the corresponding bit value in the bit field is 1, the VRB is not allocated to the UE otherwise. The portion of the bitmap used to address VRBs in a selected RBG subset has size and is defined as

The addressable VRB numbers of a selected RBG subset start from an offset, to the smallest VRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of VRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest VRB number within the selected RBG subset. is the number of VRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates VRB number,

.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP in frame structure type 2, or for subframes with the same duration as the DwPTS duration of the special subframe configuration 0 and 5 in frame structure type 3, with the special subframe configurations shown in Table 4.2-1 of [3], a non-BL/CE UE shall assume there is no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, SI-RNTI, or SC-RNTI, or if PDSCH is assigned by MPDCCH DCI Format 6-1B, or if PDSCH carriers SystemInformationBlockType1-BR, or if PDSCH carries BL/CE SI messages, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– if the assigned PDSCH is transmitted only in the second slot of a subframe, the UE shall useand Table 7.1.7.1-1A to determine the modulation order (). The modulation order () used in the physical downlink shared channel is set to ;

– otherwise, the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– if the assigned PDSCH is transmitted only in the second slot of a subframe, the UE shall useand Table 7.1.7.1-1 to determine the modulation order (). The modulation order () used in the physical downlink shared channel is set to ;

– otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

Modulation Order

TBS Index

0

2

2

0

1

2

2

1

2

2

2

2

3

2

2

3

4

2

2

4

5

2

4

5

6

2

4

6

7

2

4

7

8

2

4

8

9

2

4

9

10

4

6

9

11

4

6

10

12

4

6

11

13

4

6

12

14

4

6

13

15

4

6

14

16

4

6

15

17

6

6

15

18

6

6

16

19

6

6

17

20

6

6

18

21

6

6

19

22

6

6

20

23

6

6

21

24

6

6

22

25

6

6

23

26

6

6

24

27

6

6

25

28

6

6

26/26A

29

2

2

reserved

30

4

4

31

6

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A or DCI format 6-1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in subclause 7.1.7.2.1 for .

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1A with CRC scrambled by C-RNTI and for DCI format 1/1A/2/2A/2B/2C/2D with CRC scrambled by SPS C-RNTI:

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a26 in tbsIndexAlt, is 26A; otherwise is 26. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH/MPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

26A

7224

7736

8504

9144

9912

10296

11064

11832

12576

12960

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

26A

13536

14112

15264

15840

16416

16992

17568

18336

19080

19848

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

26A

20616

20616

21384

22152

22920

23688

24496

24496

25456

26416

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

26A

26416

27376

27376

29296

29296

29296

30576

30576

31704

32856

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

26A

32856

34008

34008

35160

36696

36696

36696

37888

37888

39232

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

26A

40576

40576

40576

40576

42368

42368

43816

43816

45352

45352

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

26A

45352

46888

46888

48936

48936

48936

51024

51024

51024

52752

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

26A

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

26A

59256

59256

59256

61664

61664

61664

63776

63776

63776

66592

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

26A

66592

66592

66592

68808

68808

68808

71112

71112

71112

71112

1

2

3

4

5

6

7

8

9

10

27

648

1320

1992

2664

3368

4008

4584

5352

5992

6712

28

680

1384

2088

2792

3496

4264

4968

5544

6200

6968

29

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

30

776

1544

2344

3112

3880

4776

5544

6200

6968

7736

31

808

1608

2472

3240

4136

4968

5736

6456

7480

8248

32

840

1672

2536

3368

4264

5160

5992

6712

7736

8504

33

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

33A

840

1736

2600

3496

4392

5160

5992

6968

7736

8760

11

12

13

14

15

16

17

18

19

20

27

7224

7992

8504

9144

9912

10680

11448

11832

12576

12960

28

7736

8504

9144

9912

10680

11064

11832

12576

13536

14112

29

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

30

8504

9528

10296

11064

11832

12576

13536

14112

14688

15840

31

9144

9912

10680

11448

12216

12960

14112

14688

15840

16416

32

9528

10296

11064

11832

12960

13536

14688

15264

16416

16992

33

10680

11832

12960

13536

14688

15840

16992

17568

19080

19848

33A

9528

10296

11448

12216

12960

14112

14688

15840

16416

17568

21

22

23

24

25

26

27

28

29

30

27

14112

14688

15264

15840

16416

16992

17568

18336

19080

19848

28

14688

15264

16416

16992

17568

18336

19080

19848

20616

21384

29

15840

16416

16992

17568

18336

19080

19848

20616

21384

22152

30

16416

16992

18336

19080

19848

20616

21384

22152

22920

23688

31

17568

18336

19080

19848

20616

21384

22152

22920

23688

24496

32

17568

19080

19848

20616

21384

22152

22920

23688

24496

25456

33

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

33A

18336

19080

19848

20616

22152

22920

23688

24496

25456

26416

31

32

33

34

35

36

37

38

39

40

27

20616

21384

22152

22920

22920

23688

24496

25456

25456

26416

28

22152

22152

22920

23688

24496

25456

26416

26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

33A

27376

27376

29296

29296

30576

30576

31704

32856

34008

35160

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

33A

35160

36696

36696

37888

39232

40576

40576

40576

42368

43816

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

33A

43816

45352

45352

46888

48936

48936

48936

51024

51024

52752

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

33A

52752

55056

55056

55056

57336

57336

57336

59256

59256

61664

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

33A

61664

61664

63776

63776

66592

66592

66592

68808

68808

68808

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

33A

71112

71112

71112

73712

75376

75376

76208

76208

78704

78704

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

33A

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

33A

87936

87936

87936

90816

90816

90816

93800

93800

93800

97896

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

76208

152976

81176

161760

87936

175600

93800

187712

78704

157432

84760

169544

90816

181656

97896

195816

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-807744 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1211616 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-pusch-nb-maxTbs-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.6a.3 Test description

7.1.7.1.6a.3.1 Pre-test conditions

System Simulator

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble

– The UE is in state Loopback Activated (state 4) according to [18] condition 4TX to configure MIMO.

7.1.7.1.6a.3.2 Test procedure sequence

Table 7.1.7.1.6a.3.2-1: Maximum TBsize for different UE categories (3 and 4 Layers, 64QAM)

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 5

149776

Category 6

149776

Category 7

149776

Category 9

149776

Category 10

149776

Category 11

149776

Category 12

149776

Category 15

149776

Category 16

149776

Category 18

149776

Category 19

149776

Category 20

149776

Category 21

149776

Table 7.1.7.1.6a.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72)

10

8*FLOOR((TBsize – 376)/80)

11

8*FLOOR((TBsize – 400)/88)

12

8*FLOOR((TBsize – 432)/96)

13

8*FLOOR((TBsize – 456)/104)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.6a.3.2-2a: Bandwidth Dependent Parameters (RA type 0)

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.6a.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.6a.3.2-2c: Bandwidth Dependent Parameters (RA type 1)

Max Bandwidth

Max

5 MHz

25

11

10 MHz

50

14

15 MHz

75

16

20 MHz

100

22

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.6a.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 5 are repeated for allowed values of as per table 7.1.7.1.6a.3.2-2a and for each from 0 to 28

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of .

SS looks up TBsize#1 in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

SS looks up TBsize#2 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

The SS uses the same for both transport blocks:

= =

EXCEPTION: Steps 2 to 5 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.6a.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.6a.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.6a.3.2-2.

3

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation, Transport block to codeword swap flag set to ‘0’, coding scheme for transport block 1 and for transport block 2 and Precoding information set to ’1’ for 3 Layers spatial multiplexing. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 0, RBA(), Transport block to codeword swap flag=’0’, , , Precoding information=’1’)

4

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

5

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(N x PDCP SDUs)

1

P

EXCEPTION: Steps 6 to 10 are repeated for allowed values of as per table 7.1.7.1.6a.3.2-2c and for each from 0 to 28

6

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of .

SS looks up TBsize#1 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

SS looks up TBsize#2 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

The SS uses the same for both transport blocks:

= =

EXCEPTION: Steps 7 to 10 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.6a.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.6a.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

7

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.6a.3.2-2.

8

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation, Transport block to codeword swap flag set to ‘1’, coding scheme for transport block 1 and for transport block 2 and Precoding information set to ’2’ for 4 Layers spatial multiplexing. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 1, RBA(), Transport block to codeword swap flag=’1’, , , Precoding information=’2’)

9

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

10

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 8?

–>

(N x PDCP SDUs)

2

P

7.1.7.1.6a.3.3 Specific Message Contents

Table 7.1.7.1.6a.3.3-1: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

UE category 5

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v1020

Checked against UE Category indications in the PICS

UE category 6, 7

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v1170

Checked against UE Category indications in the PICS

UE category 9, 10

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

dl-256QAM-r12

supported

}

}

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.7 DL-SCH transport block size selection / DCI format 1 / RA type 0 / 256QAM

7.1.7.1.7.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE on PDCCH receives DCI format 1 indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.7.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.2; TS 36.213, clauses 7.1.6.1, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

DCI format 1 is used for the scheduling of one PDSCH codeword.

The following information is transmitted by means of the DCI format 1:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]:

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6 of [3]

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1.

If the number of information bits in format 1 belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1 until the payload size of format 1 does not belong to one of the sizes in Table 5.3.3.1.2-1 and not equal to that of format 0/1A.

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the resource block groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive physical resource blocks (PRBs). Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of PRBs is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 Resource Allocation RBG Size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal CP or configurations 0 and 4 with extended CP, shown in table 4.2-1 [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in subclause 7.1.7.2.1 for .

Else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1A with CRC scrambled by C-RNTI and for DCI format 1/1A/2/2A/2B/2C/2D with CRC scrambled by SPS C-RNTI:

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

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4392

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18336

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66592

68808

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106

107

108

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6456

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7224

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7480

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7736

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7736

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8760

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9528

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10680

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11064

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12216

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12960

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14112

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14688

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15840

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17568

10

17568

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20616

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21384

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22152

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22920

23688

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23688

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26416

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29296

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43816

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63776

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2

3

4

5

6

7

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9

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648

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3368

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776

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32

840

1672

2536

3368

4264

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6712

7736

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33

968

1992

2984

4008

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6968

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8760

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11

12

13

14

15

16

17

18

19

20

27

7224

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7736

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8248

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9144

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9528

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10680

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17568

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21

22

23

24

25

26

27

28

29

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27

14112

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17568

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32

17568

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20616

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32

33

34

35

36

37

38

39

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27

20616

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22920

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42

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31704

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34008

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51

52

53

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34008

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61

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42368

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51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4.Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 7

301504

149776 (4 layers)

75376 (2 layers)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 10

452256

149776 (4 layers)

75376 (2 layers)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Note: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

Note 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Note 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI

Note 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.7.3 Test description

7.1.7.1.7.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.7.3.2 Test procedure sequence

Table 7.1.7.1.7.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.7.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

72241 ≤ TBsize ≤ 84264

7

8*FLOOR((TBsize – 264)/56)

84265 ≤ TBsize ≤ 96296

8

8*FLOOR((TBsize – 296)/64)

TBsize> 96296

9

8*FLOOR((TBsize – 320)/72)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEiL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits

Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.7.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.7.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.7.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.7.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.7.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.7.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.7.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1 with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1 by the SS.

If the number of information bits in format 1 belongs to one of the sizes in Table 7.1.7.1.7.3.2-2b, one or more zero bit(s) shall be appended to format 1 by the SS until the payload size of format 1 does not belong to one of the sizes in Table 7.1.7.1.7.3.2-2b and not equal to that of format 0/1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1, RA type 0, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.7.3.3 Specific Message Contents

Table 7.1.7.1.7.3.3-1: MAC-MainConfig-RBC in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.7.3.3-2: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.7.3.3-3: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.8 DL-SCH transport block size selection / DCI format 1 / RA type 1 / 256QAM

7.1.7.1.8.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE on PDCCH receives DCI format 1 indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.8.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.2; TS 36.213, clauses 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

DCI format 1 is used for the scheduling of one PDSCH codeword.

The following information is transmitted by means of the DCI format 1:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

– If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 1 as defined in section 7.1.6.2 of [3]:

bits of this field are used as a header specific to this resource allocation type to indicate the selected resource blocks subset

– 1 bit indicates a shift of the resource allocation span

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6 of [3]

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1.

If the number of information bits in format 1 belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1 until the payload size of format 1 does not belong to one of the sizes in Table 5.3.3.1.2-1 and not equal to that of format 0/1A.

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the VRBs from the set of VRBs from one of P RBG subsets. The virtual resource blocks used are of localized type as defined in subclause 6.2.3.1 of [3]. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single VRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the VRBs in the increasing frequency order. The VRB is allocated to the UE if the corresponding bit value in the bit field is 1, the VRB is not allocated to the UE otherwise. The portion of the bitmap used to address VRBs in a selected RBG subset has size and is defined as

The addressable VRB numbers of a selected RBG subset start from an offset, to the smallest VRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of VRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest VRB number within the selected RBG subset. is the number of VRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates VRB number,

.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

– for special subframe configuration 9 with normal cyclic prefix or special subframe configuration 7 with extended cyclic prefix:

– set the Table 7.1.7.2.1-1 column indicator

– for other special subframe configurations:

– set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

Else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

The NDI and HARQ process ID, as signalled on PDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

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6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

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7224

7480

7480

7736

7992

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8248

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8760

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8248

8504

8760

8760

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9528

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9912

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9528

9528

9912

9912

10296

10680

10680

11064

11064

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10680

10680

11064

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11832

12216

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12576

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11832

12216

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12960

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13536

13536

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12576

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14688

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15264

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13536

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14112

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14688

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15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

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16416

16416

16992

17568

17568

18336

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19080

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19848

19

17568

18336

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19080

19080

19848

20616

20616

21384

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20

19080

19848

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20616

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21384

22152

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22920

22920

21

20616

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22152

22920

22920

23688

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22152

22920

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27376

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26416

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28336

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26416

26416

27376

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26

30576

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31704

32856

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34008

35160

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36696

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52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

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1864

1864

1928

1992

1992

2024

2088

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2152

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2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

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4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

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5352

6

5352

5352

5544

5736

5736

5992

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5992

6200

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7

6200

6456

6456

6712

6712

6712

6968

6968

7224

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8

7224

7224

7480

7480

7736

7736

7992

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8248

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7992

8248

8248

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8760

8760

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9528

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9144

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9528

9528

9912

9912

10296

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10680

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10296

10680

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11064

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11832

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11832

11832

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13536

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12960

13536

13536

14112

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14688

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15264

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14

14688

14688

15264

15264

15840

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16416

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15840

15840

16416

16416

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17568

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18336

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16416

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17568

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18336

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19080

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19848

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18336

19080

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19848

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20616

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20616

21384

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19848

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22152

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22920

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23688

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22152

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23688

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26416

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31704

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32856

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26

37888

37888

39232

40576

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42368

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43816

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61

62

63

64

65

66

67

68

69

70

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1672

1736

1736

1800

1800

1800

1864

1864

1928

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1

2216

2280

2280

2344

2344

2408

2472

2472

2536

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2

2728

2792

2856

2856

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2984

2984

3112

3112

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3

3624

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3624

3752

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3880

3880

4008

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4136

4

4392

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4584

4584

4584

4776

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4968

4968

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5

5352

5544

5544

5736

5736

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6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

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7

7480

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7736

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8248

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8

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8760

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9528

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9

9528

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10296

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10680

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11064

11064

10

10680

11064

11064

11448

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11832

11832

12216

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11

12216

12576

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12960

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13536

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14112

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12

14112

14112

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14688

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15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

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17568

17568

18336

14

17568

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18336

18336

19080

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19848

19848

19848

15

18336

19080

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19848

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20616

20616

20616

21384

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16

19848

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20616

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22152

22152

22152

22920

17

22152

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22920

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23688

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24496

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18

24496

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26416

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27376

27376

19

26416

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28336

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20

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31704

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22

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23

35160

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39232

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40576

24

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25

39232

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45352

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48936

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51024

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52752

71

72

73

74

75

76

77

78

79

80

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1992

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2088

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2216

2216

1

2600

2600

2664

2728

2728

2792

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2856

2856

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2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

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4392

4584

4584

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4

5160

5160

5160

5352

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5544

5544

5544

5736

5736

5

6200

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6456

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6712

6712

6712

6968

6968

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6

7480

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7736

7736

7736

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8248

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8248

7

8760

8760

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9144

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9528

9528

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9912

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9912

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10296

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10680

10680

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11064

11064

11064

9

11064

11448

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11832

11832

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12216

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10

12576

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12960

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13536

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13536

14112

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11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

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17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

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14

20616

20616

20616

21384

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22152

22152

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22920

22920

15

22152

22152

22152

22920

22920

23688

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23688

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16

22920

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26416

17

25456

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27376

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18

28336

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31704

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19

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31704

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32856

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20

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42368

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43816

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48936

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45352

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52752

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55056

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59256

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82

83

84

85

86

87

88

89

90

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2280

2280

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2344

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2408

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2472

2472

2536

1

2984

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3112

3112

3112

3240

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2

3624

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3752

3752

3880

3880

3880

4008

4008

4008

3

4776

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4968

4968

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5160

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4

5736

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6200

6200

6200

6456

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5

7224

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7480

7480

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7736

7736

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6

8504

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8760

8760

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9528

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9912

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10296

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10680

10680

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11064

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11448

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11832

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12216

12216

12216

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12960

12960

12960

13536

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13536

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14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

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17568

17568

17568

18336

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12

18336

19080

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19080

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19848

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20616

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13

20616

21384

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22152

22152

22152

22920

22920

22920

14

22920

23688

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25456

25456

15

24496

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26416

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16

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28336

28336

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29296

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17

29296

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31704

31704

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18

31704

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35160

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19

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39232

20

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43816

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22

43816

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48936

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23

46888

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48936

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24

48936

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59256

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61664

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63776

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66592

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91

92

93

94

95

96

97

98

99

100

0

2536

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2600

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2664

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1

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3

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4

6456

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6712

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5

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8760

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6

9528

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10296

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11064

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11832

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12216

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8

12576

12960

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13536

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14112

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9

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14688

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15264

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15840

15840

10

15840

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16416

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17568

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11

18336

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19080

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19848

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19848

19848

12

20616

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22920

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23688

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14

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15

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16

29296

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31704

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32856

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18

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39232

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19

39232

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40576

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42368

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20

42368

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21

45352

46888

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48936

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22

48936

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55056

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61664

61664

25

57336

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61664

61664

61664

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63776

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26

66592

68808

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75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

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3112

1

3752

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3752

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3880

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4008

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2

4584

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4968

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3

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6200

6200

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6456

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4

7224

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7480

7480

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7736

7736

7736

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5

8760

9144

9144

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9528

9528

9528

9528

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6

10680

10680

10680

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11064

11064

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11448

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7

12216

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12960

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8

14112

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14688

14688

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15264

15264

15264

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9

15840

16416

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17568

10

17568

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18336

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19080

19080

19080

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11

20616

20616

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21384

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21384

21384

22152

22152

22152

12

22920

23688

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24496

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24496

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13

26416

26416

26416

26416

27376

27376

27376

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28336

28336

14

29296

29296

29296

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30576

30576

30576

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31704

31704

15

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31704

31704

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34008

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16

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35160

35160

35160

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17

36696

36696

36696

37888

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39232

39232

39232

39232

18

40576

40576

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42368

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42368

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43816

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19

43816

43816

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45352

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46888

46888

20

46888

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48936

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21

51024

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55056

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22

55056

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23

57336

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61664

61664

61664

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63776

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71112

26

75376

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1

2

3

4

5

6

7

8

9

10

27

648

1320

1992

2664

3368

4008

4584

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6712

28

680

1384

2088

2792

3496

4264

4968

5544

6200

6968

29

712

1480

2216

2984

3752

4392

5160

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6712

7480

30

776

1544

2344

3112

3880

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5544

6200

6968

7736

31

808

1608

2472

3240

4136

4968

5736

6456

7480

8248

32

840

1672

2536

3368

4264

5160

5992

6712

7736

8504

33

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

11

12

13

14

15

16

17

18

19

20

27

7224

7992

8504

9144

9912

10680

11448

11832

12576

12960

28

7736

8504

9144

9912

10680

11064

11832

12576

13536

14112

29

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

30

8504

9528

10296

11064

11832

12576

13536

14112

14688

15840

31

9144

9912

10680

11448

12216

12960

14112

14688

15840

16416

32

9528

10296

11064

11832

12960

13536

14688

15264

16416

16992

33

10680

11832

12960

13536

14688

15840

16992

17568

19080

19848

21

22

23

24

25

26

27

28

29

30

27

14112

14688

15264

15840

16416

16992

17568

18336

19080

19848

28

14688

15264

16416

16992

17568

18336

19080

19848

20616

21384

29

15840

16416

16992

17568

18336

19080

19848

20616

21384

22152

30

16416

16992

18336

19080

19848

20616

21384

22152

22920

23688

31

17568

18336

19080

19848

20616

21384

22152

22920

23688

24496

32

17568

19080

19848

20616

21384

22152

22920

23688

24496

25456

33

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

31

32

33

34

35

36

37

38

39

40

27

20616

21384

22152

22920

22920

23688

24496

25456

25456

26416

28

22152

22152

22920

23688

24496

25456

26416

26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.8.3 Test description

7.1.7.1.8.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.8.3.2 Test procedure sequence

Table 7.1.7.1.8.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.8.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

72241 ≤ TBsize ≤ 84264

7

8*FLOOR((TBsize – 264)/56)

84265 ≤ TBsize ≤ 96296

8

8*FLOOR((TBsize – 296)/64)

TBsize> 96296

9

8*FLOOR((TBsize – 320)/72)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits
Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.8.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.8.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.8.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.8.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.8.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.8.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.8.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1 with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1 is equal to that for format 0/1A, one bit of value zero shall be appended to format 1 by the SS.

If the number of information bits in format 1 belongs to one of the sizes in Table 7.1.7.1.8.3.2-2b, one or more zero bit(s) shall be appended to format 1 by the SS until the payload size of format 1 does not belong to one of the sizes in Table 7.1.7.1.8.3.2-2b and not equal to that of format 0/1A.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1, RA type 1, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.8.3.3 Specific Message Contents

Table 7.1.7.1.8.3.3-1: MAC-MainConfig-RBC in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.8.3.3-2: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.8.3.3-3: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

Only first entry checked

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.9 DL-SCH transport block size selection / DCI format 1B / RA type 2 / Localised VRB / 256QAM

7.1.7.1.9.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE on PDCCH receives DCI format 1B indicating Resource Allocation Type 2 and Localized virtual resource blocks, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.9.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.3A; TS 36.213, clauses 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.3A]

The following information is transmitted by means of the DCI format 1B:

– Carrier indicator – 0 or 3 bits. The field is present according to the definitions in [3].

– Localized/Distributed VRB assignment flag – 1 bit as defined in section 7.1.6.3 of [3]

– Resource block assignment – bits as defined in section 7.1.6.3 of [3]

– For localized VRB:

bits provide the resource allocation

– For distributed VRB:

– For

bits provide the resource allocation

– For

– 1 bit, the MSB indicates the gap value, where value 0 indicates and value 1 indicates

bits provide the resource allocation

– Modulation and coding scheme – 5bits as defined in section 7.1.7 of [3]

– HARQ process number – 3 bits (for cases with FDD primary cell) , 4 bits (for cases with TDD primary cell)

– New data indicator – 1 bit

– Redundancy version – 2 bits

– TPC command for PUCCH – 2 bits as defined in section 5.1.2.1 of [3]

– Downlink Assignment Index – number of bits as specified in Table 5.3.3.1.2-2.

– TPMI information for precoding – number of bits as specified in Table 5.3.3.1.3A-1

TPMI information indicates which codebook index is used in Table 6.3.4.2.3-1 or Table 6.3.4.2.3-2 of [2] corresponding to the single-layer transmission.

– PMI confirmation for precoding – 1 bit as specified in Table 5.3.3.1.3A-2.

– HARQ-ACK resource offset (this field is present when this format is carried by EPDCCH. This field is not present when this format is carried by PDCCH) – 2 bits as defined in section 10.1 of [3]. The 2 bits are set to 0 when this format is carried by EPDCCH on a secondary cell, or when this format is carried by EPDCCH on the primary cell scheduling PDSCH on a secondary cell and the UE is configured with PUCCH format 3 for HARQ-ACK feedback.

If PMI confirmation indicates that the eNodeB has applied precoding according to PMI(s) reported by the UE, the precoding for the corresponding RB(s) in subframe n is according to the latest PMI(s) in an aperiodic CSI reported on or before subframe n-4.

Table 5.3.3.1.3A-1: Number of bits for TPMI information

Number of antenna ports
at eNodeB

Number
of bits

2

2

4

4

Table 5.3.3.1.3A-2: Content of PMI confirmation

Bit field mapped to index

Message

0

Precoding according to the indicated TPMI in the TPMI information field

1

Precoding using the precoder(s) according to PMI(s) indicated in the latest aperiodic CSI report.

For aperiodic CSI mode 2-2:

– Precoding of scheduled resource blocks belonging to the reported preferred M subband(s), use precoder(s) according to the preferred M subband PMI(s) indicated in the latest aperiodic CSI report;

– Precoding of scheduled resource blocks not belonging to the reported preferred M subband(s), precoding using a precoder according to the wideband PMI indicated in the latest aperiodic CSI report.

If the number of information bits in format 1B is equal to that for format 0/1A for scheduling the same serving cell and mapped onto the UE specific search space given by the C-RNTI as defined in [3], one bit of value zero shall be appended to format 1B.

If the number of information bits in format 1B carried by PDCCH belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1B until the payload size of format 1B does not belong to one of the sizes in Table 5.3.3.1.2-1 and is not equal to that of format 0/1A mapped onto the same search space.

[TS 36.213 clause 7.1.6.3]

In resource allocations of type 2, the resource block assignment information indicates to a scheduled UE a set of contiguously allocated localized virtual resource blocks or distributed virtual resource blocks. In case of resource allocation signalled with PDCCH DCI format 1A, 1B or 1D, or for resource allocation signalled with EPDCCH DCI format 1A, 1B, or 1D, one bit flag indicates whether localized virtual resource blocks or distributed virtual resource blocks are assigned (value 0 indicates Localized and value 1 indicates Distributed VRB assignment) while distributed virtual resource blocks are always assigned in case of resource allocation signalled with PDCCH DCI format 1C. Localized VRB allocations for a UE vary from a single VRB up to a maximum number of VRBs spanning the system bandwidth. For DCI format 1A the distributed VRB allocations for a UE vary from a single VRB up to VRBs, where is defined in [3], if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI. With PDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI or Temporary C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With EPDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With PDCCH DCI format 1C, distributed VRB allocations for a UE vary from VRB(s) up to VRBs with an increment step of , where value is determined depending on the downlink system bandwidth as shown in Table 7.1.6.3-1.

Table 7.1.6.3-1: values vs. Downlink System Bandwidth

System BW ()

DCI format 1C

6-49

2

50-110

4

For PDCCH DCI format 1A, 1B or 1D, or for EPDCCH DCI format 1A, 1B, or 1D, a type 2 resource allocation field consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of virtually contiguously allocated resource blocks. The resource indication value is defined by

if then

else

where≥ 1 and shall not exceed .

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– set the Table 7.1.7.2.1-1 column indicator to from subclause 5.3.3.1.3 in [4]

else

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

– for special subframe configuration 9 with normal cyclic prefix or special subframe configuration 7 with extended cyclic prefix:

– set the Table 7.1.7.2.1-1 column indicator

– for other special subframe configurations:

– set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in subclause 7.1.7.2.1 for .

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1A with CRC scrambled by C-RNTI and for DCI format 1/1A/2/2A/2B/2C/2D with CRC scrambled by SPS C-RNTI:

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a33 in tbsIndexAlt, is 33A; otherwise is 33. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

1

2

3

4

5

6

7

8

9

10

27

648

1320

1992

2664

3368

4008

4584

5352

5992

6712

28

680

1384

2088

2792

3496

4264

4968

5544

6200

6968

29

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

30

776

1544

2344

3112

3880

4776

5544

6200

6968

7736

31

808

1608

2472

3240

4136

4968

5736

6456

7480

8248

32

840

1672

2536

3368

4264

5160

5992

6712

7736

8504

33

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

11

12

13

14

15

16

17

18

19

20

27

7224

7992

8504

9144

9912

10680

11448

11832

12576

12960

28

7736

8504

9144

9912

10680

11064

11832

12576

13536

14112

29

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

30

8504

9528

10296

11064

11832

12576

13536

14112

14688

15840

31

9144

9912

10680

11448

12216

12960

14112

14688

15840

16416

32

9528

10296

11064

11832

12960

13536

14688

15264

16416

16992

33

10680

11832

12960

13536

14688

15840

16992

17568

19080

19848

21

22

23

24

25

26

27

28

29

30

27

14112

14688

15264

15840

16416

16992

17568

18336

19080

19848

28

14688

15264

16416

16992

17568

18336

19080

19848

20616

21384

29

15840

16416

16992

17568

18336

19080

19848

20616

21384

22152

30

16416

16992

18336

19080

19848

20616

21384

22152

22920

23688

31

17568

18336

19080

19848

20616

21384

22152

22920

23688

24496

32

17568

19080

19848

20616

21384

22152

22920

23688

24496

25456

33

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

31

32

33

34

35

36

37

38

39

40

27

20616

21384

22152

22920

22920

23688

24496

25456

25456

26416

28

22152

22152

22920

23688

24496

25456

26416

26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.9.3 Test description

7.1.7.1.9.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.9.3.2 Test procedure sequence

Table 7.1.7.1.9.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.9.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

72241 ≤ TBsize ≤ 84264

7

8*FLOOR((TBsize – 264)/56)

84265 ≤ TBsize ≤ 96296

8

8*FLOOR((TBsize – 296)/64)

TBsize> 96296

9

8*FLOOR((TBsize – 320)/72)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits

Therefore Maximum MAC header size can be 40 bits
Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.9.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.9.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.9.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.9.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.9.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.9.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.9.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1B with RA type 2, Localised VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1B is equal to that for format 0/1A, one bit of value zero shall be appended to format 1B.

If the number of information bits in format 1B belongs to one of the sizes in Table 7.1.7.1.9.3.2-2b , one or more zero bit(s) shall be appended to format 1B until the payload size of format 1B does not belong to one of the sizes in Table 7.1.7.1.9.3.2-2b and is not equal to that of format 0/1A mapped onto the same search space.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1B, RA type 2, Localised VRB, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.9.3.3 Specific Message Contents

Table 7.1.7.1.9.3.3-1: MAC-MainConfig-RBC in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.9.3.3-2: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

antennaInfo CHOICE {

explicitValue SEQUENCE {

transmissionMode

tm6

codebookSubsetRestriction CHOICE {

n4TxAntenna-tm6

‘1111’

}

}

}

cqi-ReportConfig-r10 SEQUENCE {

cqi-ReportAperiodic-r10 CHOICE {

setup SEQUENCE {

cqi-ReportModeAperiodic-r10

rm31

aperiodicCSI-Trigger-r10

Not present

}

}

}

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.9.3.3-3: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

Only first entry checked

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.10 DL-SCH transport block size selection / DCI format 1B / RA type 2 / Distributed VRB / 256QAM

7.1.7.1.10.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE on PDCCH receives DCI format 1B indicating Resource Allocation Type 2 and Distributed virtual resource blocks, a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.10.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.3A; TS 36.213, clauses 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.3A]

The following information is transmitted by means of the DCI format 1B:

– Carrier indicator – 0 or 3 bits. The field is present according to the definitions in [3].

– Localized/Distributed VRB assignment flag – 1 bit as defined in section 7.1.6.3 of [3]

– Resource block assignment – bits as defined in section 7.1.6.3 of [3]

– For localized VRB:

bits provide the resource allocation

– For distributed VRB:

– For

bits provide the resource allocation

– For

– 1 bit, the MSB indicates the gap value, where value 0 indicates and value 1 indicates

bits provide the resource allocation

– Modulation and coding scheme – 5bits as defined in section 7.1.7 of [3]

– HARQ process number – 3 bits (for cases with FDD primary cell) , 4 bits (for cases with TDD primary cell)

– New data indicator – 1 bit

– Redundancy version – 2 bits

– TPC command for PUCCH – 2 bits as defined in section 5.1.2.1 of [3]

– Downlink Assignment Index – number of bits as specified in Table 5.3.3.1.2-2.

– TPMI information for precoding – number of bits as specified in Table 5.3.3.1.3A-1

TPMI information indicates which codebook index is used in Table 6.3.4.2.3-1 or Table 6.3.4.2.3-2 of [2] corresponding to the single-layer transmission.

– PMI confirmation for precoding – 1 bit as specified in Table 5.3.3.1.3A-2

– HARQ-ACK resource offset (this field is present when this format is carried by EPDCCH. This field is not present when this format is carried by PDCCH) – 2 bits as defined in section 10.1 of [3]. The 2 bits are set to 0 when this format is carried by EPDCCH on a secondary cell, or when this format is carried by EPDCCH on the primary cell scheduling PDSCH on a secondary cell and the UE is configured with PUCCH format 3 for HARQ-ACK feedback.

If PMI confirmation indicates that the eNodeB has applied precoding according to PMI(s) reported by the UE, the precoding for the corresponding RB(s) in subframe n is according to the latest PMI(s) in an aperiodic CSI reported on or before subframe n-4.

Table 5.3.3.1.3A-1: Number of bits for TPMI information

Number of antenna ports
at eNodeB

Number
of bits

2

2

4

4

Table 5.3.3.1.3A-2: Content of PMI confirmation

Bit field mapped to index

Message

0

Precoding according to the indicated TPMI in the TPMI information field

1

Precoding using the precoder(s) according to PMI(s) indicated in the latest aperiodic CSI report.

For aperiodic CSI mode 2-2:

– Precoding of scheduled resource blocks belonging to the reported preferred M subband(s), use precoder(s) according to the preferred M subband PMI(s) indicated in the latest aperiodic CSI report;

– Precoding of scheduled resource blocks not belonging to the reported preferred M subband(s), precoding using a precoder according to the wideband PMI indicated in the latest aperiodic CSI report.

If the number of information bits in format 1B is equal to that for format 0/1A for scheduling the same serving cell and mapped onto the UE specific search space given by the C-RNTI as defined in [3], one bit of value zero shall be appended to format 1B.

If the number of information bits in format 1B carried by PDCCH belongs to one of the sizes in Table 5.3.3.1.2-1, one or more zero bit(s) shall be appended to format 1B until the payload size of format 1B does not belong to one of the sizes in Table 5.3.3.1.2-1 and is not equal to that of format 0/1A mapped onto the same search space.

[TS 36.213 clause 7.1.6.3]

In resource allocations of type 2, the resource block assignment information indicates to a scheduled UE a set of contiguously allocated localized virtual resource blocks or distributed virtual resource blocks. In case of resource allocation signalled with PDCCH DCI format 1A, 1B or 1D, or for resource allocation signalled with EPDCCH DCI format 1A, 1B, or 1D, one bit flag indicates whether localized virtual resource blocks or distributed virtual resource blocks are assigned (value 0 indicates Localized and value 1 indicates Distributed VRB assignment) while distributed virtual resource blocks are always assigned in case of resource allocation signalled with PDCCH DCI format 1C. Localized VRB allocations for a UE vary from a single VRB up to a maximum number of VRBs spanning the system bandwidth. For DCI format 1A the distributed VRB allocations for a UE vary from a single VRB up to VRBs, where is defined in [3], if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI. With PDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI or Temporary C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With EPDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With PDCCH DCI format 1C, distributed VRB allocations for a UE vary from VRB(s) up to VRBs with an increment step of , where value is determined depending on the downlink system bandwidth as shown in Table 7.1.6.3-1.

Table 7.1.6.3-1: values vs. Downlink System Bandwidth

System BW ()

DCI format 1C

6-49

2

50-110

4

For PDCCH DCI format 1A, 1B or 1D, or for EPDCCH DCI format 1A, 1B, or 1D, a type 2 resource allocation field consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of virtually contiguously allocated resource blocks. The resource indication value is defined by

if then

else

where≥ 1 and shall not exceed .

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– set the Table 7.1.7.2.1-1 column indicator to from subclause 5.3.3.1.3 in [4]

else

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

– for special subframe configuration 9 with normal cyclic prefix or special subframe configuration 7 with extended cyclic prefix:

– set the Table 7.1.7.2.1-1 column indicator

– for other special subframe configurations:

– set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in subclause 7.1.7.2.1 for .

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1A with CRC scrambled by C-RNTI and for DCI format 1/1A/2/2A/2B/2C/2D with CRC scrambled by SPS C-RNTI:

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a33 in tbsIndexAlt, is 33A; otherwise is 33. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

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1672

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1864

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1928

1992

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2024

2088

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2152

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2

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2344

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2408

2472

2536

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2600

2664

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4008

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4968

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6

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6200

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6456

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6712

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7224

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63

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1800

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75

76

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78

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17568

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18336

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13

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19080

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4968

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12960

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14688

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16416

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19080

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101

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105

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5

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7

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11

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13

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17

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1

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27

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28

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29

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31

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11

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29

8248

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27

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26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.10.3 Test description

7.1.7.1.10.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.10.3.2 Test procedure sequence

Table 7.1.7.1.10.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.10.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16)

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24)

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32)

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40)

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48)

72241 ≤ TBsize ≤ 84264

7

8*FLOOR((TBsize – 264)/56)

84265 ≤ TBsize ≤ 96296

8

8*FLOOR((TBsize – 296)/64)

TBsize> 96296

9

8*FLOOR((TBsize – 320)/72)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is CEIL[(16+(N-1)*12)/8] bytes which includes 16 standard AM header and (N-1) Length indicators; and

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits

Therefore Maximum MAC header size can be 40 bits
Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)
RLC Status PDU size = 16 bits

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) – 64)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.1.10.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.10.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.10.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.10.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 4 are performed if TBsize is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.10.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.10.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.1.10.3.2-2.

3

SS transmits the PDCP SDUs concatenated into a MAC PDU and indicates on PDCCH DCI Format 1B with RA type 2, Distributed VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 1B is equal to that for format 0/1A, one bit of value zero shall be appended to format 1B.

If the number of information bits in format 1B belongs to one of the sizes in Table 7.1.7.1.9.3.2-2b , one or more zero bit(s) shall be appended to format 1B until the payload size of format 1B does not belong to one of the sizes in Table 7.1.7.1.9.3.2-2b and is not equal to that of format 0/1A mapped onto the same search space.

<–

MAC PDU (NxPDCP SDUs)

DCI: (DCI Format 1B, RA type 2, Distributed VRB, RBA(), )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(NxPDCP SDUs)

1

P

7.1.7.1.10.3.3 Specific Message Contents

Table 7.1.7.1.10.3.3-1: MAC-MainConfig-RBC in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

Table 7.1.7.1.10.3.3-2: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

antennaInfo CHOICE {

explicitValue SEQUENCE {

transmissionMode

tm6

codebookSubsetRestriction CHOICE {

n4TxAntenna-tm6

‘1111’

}

}

}

cqi-ReportConfig-r10 SEQUENCE {

cqi-ReportAperiodic-r10 CHOICE {

setup SEQUENCE {

cqi-ReportModeAperiodic-r10

rm31

aperiodicCSI-Trigger-r10

Not present

}

}

}

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.10.3.3-3: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

Only first entry checked

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.11 DL-SCH transport block size selection / DCI format 2A / RA type 0 / Two transport blocks enabled / Transport block to codeword swap flag value set to ’0’ / 256QAM

7.1.7.1.11.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’0’ and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport block of size correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.11.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.5A; TS 36.213, clauses 7.1.6.1, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.2; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Carrier indicator – 0 or 3 bits. The field is present according to the definitions in [3].

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6.1 of [3]

– TPC command for PUCCH – 2 bits as defined in section 5.1.2.1 of [3]

– Downlink Assignment Index – number of bits as specified in Table 5.3.3.1.2-2.

– HARQ process number – 3 bits (for cases with FDD primary cell), 4 bits (for cases with TDD primary cell)

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑1.

In case one of the transport blocks is disabled, the transport block to codeword swap flag is reserved and the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑2.

The precoding information field is defined according to Table 5.3.3.1.5A‑2. For a single enabled codeword, index 1 in Table 5.3.3.1.5A-2 is only supported for retransmission of the corresponding transport block if that transport block has previously been transmitted using two layers with large delay CDD.

For transmission with 2 antenna ports, the precoding information field is not present. The number of transmission layers is equal to 2 if both codewords are enabled; transmit diversity is used if codeword 0 is enabled while codeword 1 is disabled.

If the number of information bits in format 2A carried by PDCCH belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

Table 5.3.3.1.5A-1: Number of bits for precoding information

Number of antenna ports at eNodeB

Number of bits for precoding information

2

0

4

2

Table 5.3.3.1.5A-2: Content of precoding information field for 4 antenna ports

One codeword:

Codeword 0 enabled,

Codeword 1 disabled

Two codewords:

Codeword 0 enabled,

Codeword 1 enabled

Bit field mapped to index

Message

Bit field mapped to index

Message

0

4 layers: Transmit diversity

0

2 layers: precoder cycling with large delay CDD

1

2 layers: precoder cycling with large delay CDD

1

3 layers: precoder cycling with large delay CDD

2

reserved

2

4 layers: precoder cycling with large delay CDD

3

reserved

3

reserved

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the Resource Block Groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive virtual resource blocks (VRBs) of localized type as defined in subclause 6.2.3.1 of [3]. Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 resource allocation RBG size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

– for special subframe configuration 9 with normal cyclic prefix or special subframe configuration 7 with extended cyclic prefix:

– set the Table 7.1.7.2.1-1 column indicator

– for other special subframe configurations:

– set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

76208

152976

81176

161760

87936

175600

93800

187712

78704

157432

84760

169544

90816

181656

97896

195816

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.11.3 Test description

7.1.7.1.11.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.11.3.2 Test procedure sequence

Table 7.1.7.1.11.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

391656

DL Category 15

195816

DL Category 16

195816

DL Category 17

391656

DL Category 18

391656

DL Category 19

391656

DL Category 20

391656

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.11.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72)

10

8*FLOOR((TBsize – 376)/80)

11

8*FLOOR((TBsize – 400)/88)

12

8*FLOOR((TBsize – 432)/96)

13

8*FLOOR((TBsize – 456)/104)

14

8*FLOOR((TBsize – 488)/112)

15

8*FLOOR((TBsize – 512)/120)

16

8*FLOOR((TBsize – 544)/128)

17

8*FLOOR((TBsize – 568)/136)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.11.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.11.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.11.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.11.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

The SS uses the same and TBsize for both transport blocks:

= =

TBsize#1 = TBsize#2= TBsize

EXCEPTION: Steps 2 to 4 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.11.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.11.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.11.3.2-2.

3

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation and coding scheme for transport block 1 and for transport block 2. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 0, RBA(), , )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

(N x PDCP SDUs)

1

P

7.1.7.1.11.3.3 Specific Message Contents

Table 7.1.7.1.11.3.3-1: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.11.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {}

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.12 DL-SCH transport block size selection / DCI format 2A / RA type 1 / Two transport blocks enabled / Transport block to codeword swap flag value set to ’1’ / 256QAM

7.1.7.1.12.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’1’ and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport block of size correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.12.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.5A; TS 36.213, clauses 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.2; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Carrier indicator – 0 or 3 bits. The field is present according to the definitions in [3].

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 1 as defined in section 7.1.6.2 of [3]

bits of this field are used as a header specific to this resource allocation type to indicate the selected resource blocks subset

– 1 bit indicates a shift of the resource allocation span

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in section 7.1.6.1 of [3]

– TPC command for PUCCH – 2 bits as defined in section 5.1.2.1 of [3]

– Downlink Assignment Index – number of bits as specified in Table 5.3.3.1.2-2.

– HARQ process number – 3 bits (for cases with FDD primary cell), 4 bits (for cases with TDD primary cell)

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑1.

In case one of the transport blocks is disabled, the transport block to codeword swap flag is reserved and the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑2.

The precoding information field is defined according to Table 5.3.3.1.5A‑2. For a single enabled codeword, index 1 in Table 5.3.3.1.5A-2 is only supported for retransmission of the corresponding transport block if that transport block has previously been transmitted using two layers with large delay CDD.

For transmission with 2 antenna ports, the precoding information field is not present. The number of transmission layers is equal to 2 if both codewords are enabled; transmit diversity is used if codeword 0 is enabled while codeword 1 is disabled.

If the number of information bits in format 2A carried by PDCCH belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

Table 5.3.3.1.5A-1: Number of bits for precoding information

Number of antenna ports at eNodeB

Number of bits for precoding information

2

0

4

2

Table 5.3.3.1.5A-2: Content of precoding information field for 4 antenna ports

One codeword:

Codeword 0 enabled,

Codeword 1 disabled

Two codewords:

Codeword 0 enabled,

Codeword 1 enabled

Bit field mapped to index

Message

Bit field mapped to index

Message

0

4 layers: Transmit diversity

0

2 layers: precoder cycling with large delay CDD

1

2 layers: precoder cycling with large delay CDD

1

3 layers: precoder cycling with large delay CDD

2

reserved

2

4 layers: precoder cycling with large delay CDD

3

reserved

3

reserved

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the VRBs from the set of VRBs from one of P RBG subsets. The virtual resource blocks used are of localized type as defined in subclause 6.2.3.1 of [3]. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single VRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the VRBs in the increasing frequency order. The VRB is allocated to the UE if the corresponding bit value in the bit field is 1, the VRB is not allocated to the UE otherwise. The portion of the bitmap used to address VRBs in a selected RBG subset has size and is defined as

The addressable VRB numbers of a selected RBG subset start from an offset, to the smallest VRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of VRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest VRB number within the selected RBG subset. is the number of VRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates VRB number,

.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

– for special subframe configuration 9 with normal cyclic prefix or special subframe configuration 7 with extended cyclic prefix:

– set the Table 7.1.7.2.1-1 column indicator

– for other special subframe configurations:

– set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33

28

2

reserved

29

4

30

6

31

8

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI

– for , the UE shall first determine the TBS index () usingand Table 7.1.7.1-1A except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for , the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using .

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

76208

152976

81176

161760

87936

175600

93800

187712

78704

157432

84760

169544

90816

181656

97896

195816

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.12.3 Test description

7.1.7.1.12.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.1.12.3.2 Test procedure sequence

Table 7.1.7.1.12.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

DL Category 11

195816

DL Category 12

195816

DL Category 13

195816

DL Category 14

195816

DL Category 15

195816

No

201936

Yes

DL Category 16

195816

No

201936

Yes

DL Category 17

391656

DL Category 18

195816

No

201936

Yes

DL Category 19

195816

No

201936

Yes

DL Category 20

195816

No

201936

Yes

DL Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.12.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72)

10

8*FLOOR((TBsize – 376)/80)

11

8*FLOOR((TBsize – 400)/88)

12

8*FLOOR((TBsize – 432)/96)

13

8*FLOOR((TBsize – 456)/104)

14

8*FLOOR((TBsize – 488)/112)

15

8*FLOOR((TBsize – 512)/120)

16

8*FLOOR((TBsize – 544)/128)

17

8*FLOOR((TBsize – 568)/136)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.12.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.12.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.12.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

0A

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

0B

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 1 to 4 are repeated for allowed values of as per table 7.1.7.1.12.3.2-2a and from 0 to 27 as per table 7.1.7.1-1A in TS 36.213.

1

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

The SS uses the same and TBsize for both transport blocks:

= =

TBsize#1 = TBsize#2= TBsize

EXCEPTION: Steps 2 to 4 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.12.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.12.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

2

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.12.3.2-2.

3

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213, transport block to codeword swap flag value set to ’1’ and modulation and coding scheme for transport block 1 and for transport block 2. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 1, RBA(), Transport block to codeword swap flag value set to=’1’, , )

3A

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

4

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 3?

–>

( N1 x PDCP SDUs,

N2 x PDCP SDUs)

1

P

7.1.7.1.12.3.3 Specific Message Contents

Table 7.1.7.1.12.3.3-1: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 0A)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.12.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13, 14

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1310

Checked against UE Category indications in the PICS

UE category DL 17

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.12a DL-SCH transport block size selection / DCI format 2A / RA type 0 and RA type 1 / Two transport blocks enabled / 3 and 4 Layer Spatial Multiplexing / 256QAM

7.1.7.1.12a.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 0, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’0’, the Precoding information set to ’1’ for 3 Layers spatial multiplexing and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport block of size correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

(2)

with { UE in E-UTRA RRC_CONNECTED state with dl-256QAM-r12 supported and altCQI-Table-r12 configured }

ensure that {

when { UE has two transport blocks enabled and on PDCCH receives DCI format 2A indicating Resource Allocation Type 1, a resource block assignment correspondent to physical resource blocks, the Transport block to codeword swap flag value set to ’1’, the Precoding information set to ’2’ for 4 Layers spatial multiplexing and a modulation and coding scheme for two transport blocks }

then { UE decodes the received transport block of size correspondent to the read and for transport block 1 and for transport block 2 and forwards it to higher layers }

}

7.1.7.1.12a.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clauses 5.3.3.1.2, 5.3.3.1.5 and 5.3.3.1.5A; TS 36.213, clauses 7.1.6.1, 7.1.6.2, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.2; and TS 36.306, clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.2]

Table 5.3.3.1.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

[TS 36.212 clause 5.3.3.1.5]

Table 5.3.3.1.5-1: Transport block to codeword mapping
(two transport blocks enabled)

transport block
to codeword
swap flag value

codeword 0
(enabled)

codeword 1
(enabled)

0

transport block 1

transport block 2

1

transport block 2

transport block 1

[TS 36.212 clause 5.3.3.1.5A]

The following information is transmitted by means of the DCI format 2A:

– Resource allocation header (resource allocation type 0 / type 1) – 1 bit as defined in section 7.1.6 of [3]

If downlink bandwidth is less than or equal to 10 PRBs, there is no resource allocation header and resource allocation type 0 is assumed.

– Resource block assignment:

– For resource allocation type 0 as defined in section 7.1.6.1 of [3]

bits provide the resource allocation

where the value of P depends on the number of DL resource blocks as indicated in subclause [7.1.6.1] of [3]

– Transport block to codeword swap flag – 1 bit

In addition, for transport block 1:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

In addition, for transport block 2:

– Modulation and coding scheme – 5 bits as defined in section 7.1.7 of [3]

– New data indicator – 1 bit

– Redundancy version – 2 bits

Precoding information – number of bits as specified in Table 5.3.3.1.5A-1

If both transport blocks are enabled, the transport block to codeword mapping is specified according to Table 5.3.3.1.5-1.

In case one of the transport blocks is disabled, the transport block to codeword swap flag is reserved and the transport block to codeword mapping is specified according to Table 5.3.3.1.5‑2.

The precoding information field is defined according to Table 5.3.3.1.5A‑2. For a single enabled codeword, index 1 in Table 5.3.3.1.5A-2 is only supported for retransmission of the corresponding transport block if that transport block has previously been transmitted using two layers with open-loop spatial multiplexing.

For transmission with 2 antenna ports, the precoding information field is not present. The number of transmission layers is equal to 2 if both codewords are enabled; transmit diversity is used if codeword 0 is enabled while codeword 1 is disabled.

If the number of information bits in format 2A belongs to one of the sizes in Table 5.3.3.1.2-1, one zero bit shall be appended to format 2A.

Table 5.3.3.1.5A-1: Number of bits for precoding information

Number of antenna ports at eNodeB

Number of bits for precoding information

2

0

4

2

Table 5.3.3.1.5A-2: Content of precoding information field for 4 antenna ports

One codeword:

Codeword 0 enabled,

Codeword 1 disabled

Two codewords:

Codeword 0 enabled,

Codeword 1 enabled

Bit field mapped to index

Message

Bit field mapped to index

Message

0

4 layers: Transmit diversity

0

2 layers: precoder cycling with large delay CDD

1

2 layers: precoder cycling with large delay CDD

1

3 layers: precoder cycling with large delay CDD

2

reserved

2

4 layers: precoder cycling with large delay CDD

3

reserved

3

reserved

[TS 36.213 clause 7.1.6.1]

In resource allocations of type 0, resource block assignment information includes a bitmap indicating the Resource Block Groups (RBGs) that are allocated to the scheduled UE where a RBG is a set of consecutive virtual resource blocks (VRBs) of localized type as defined in subclause 6.2.3.1 of [3]. Resource block group size (P) is a function of the system bandwidth as shown in Table 7.1.6.1-1. The total number of RBGs () for downlink system bandwidth of is given by where of the RBGs are of size P and if then one of the RBGs is of size. The bitmap is of size bits with one bitmap bit per RBG such that each RBG is addressable. The RBGs shall be indexed in the order of increasing frequency and non-increasing RBG sizes starting at the lowest frequency. The order of RBG to bitmap bit mapping is in such way that RBG 0 to RBG are mapped to MSB to LSB of the bitmap. The RBG is allocated to the UE if the corresponding bit value in the bitmap is 1, the RBG is not allocated to the UE otherwise.

Table 7.1.6.1-1: Type 0 resource allocation RBG size vs. Downlink System Bandwidth

System Bandwidth

RBG Size

(P)

≤10

1

11 – 26

2

27 – 63

3

64 – 110

4

[TS 36.213 clause 7.1.6.2]

In resource allocations of type 1, a resource block assignment information of size indicates to a scheduled UE the VRBs from the set of VRBs from one of P RBG subsets. The virtual resource blocks used are of localized type as defined in subclause 6.2.3.1 of [3]. Also P is the RBG size associated with the system bandwidth as shown in Table 7.1.6.1-1. A RBG subset , where , consists of every th RBG starting from RBG . The resource block assignment information consists of three fields [4].

The first field with bits is used to indicate the selected RBG subset among RBG subsets.

The second field with one bit is used to indicate a shift of the resource allocation span within a subset. A bit value of 1 indicates shift is triggered. Shift is not triggered otherwise.

The third field includes a bitmap, where each bit of the bitmap addresses a single VRB in the selected RBG subset in such a way that MSB to LSB of the bitmap are mapped to the VRBs in the increasing frequency order. The VRB is allocated to the UE if the corresponding bit value in the bit field is 1, the VRB is not allocated to the UE otherwise. The portion of the bitmap used to address VRBs in a selected RBG subset has size and is defined as

The addressable VRB numbers of a selected RBG subset start from an offset, to the smallest VRB number within the selected RBG subset, which is mapped to the MSB of the bitmap. The offset is in terms of the number of VRBs and is done within the selected RBG subset. If the value of the bit in the second field for shift of the resource allocation span is set to 0, the offset for RBG subset is given by . Otherwise, the offset for RBG subset is given by , where the LSB of the bitmap is justified with the highest VRB number within the selected RBG subset. is the number of VRBs in RBG subset and can be calculated by the following equation,

Consequently, when RBG subset is indicated, bit for in the bitmap field indicates VRB number,

.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme” field () in the DCI

and second if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– set the Table 7.1.7.2.1-1 column indicator to the total number of allocated PRBs based on the procedure defined in Section 7.1.6.

if the transport block is transmitted in DwPTS of the special subframe in frame structure type 2, then

set the Table 7.1.7.2.1-1 column indicator ,

else, set the Table 7.1.7.2.1-1 column indicator .

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP in frame structure type 2, or for subframes with the same duration as the DwPTS duration of the special subframe configuration 0 and 5 in frame structure type 3, with the special subframe configurations shown in Table 4.2-1 of [3], a non-BL/CE UE shall assume there is no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, SI-RNTI, or SC-RNTI, or if PDSCH is assigned by MPDCCH DCI Format 6-1B, or if PDSCH carriers SystemInformationBlockType1-BR, or if PDSCH carries BL/CE SI messages, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– if the assigned PDSCH is transmitted only in the second slot of a subframe, the UE shall useand Table 7.1.7.1-1A to determine the modulation order (). The modulation order () used in the physical downlink shared channel is set to ;

– otherwise, the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– if the assigned PDSCH is transmitted only in the second slot of a subframe, the UE shall useand Table 7.1.7.1-1 to determine the modulation order (). The modulation order () used in the physical downlink shared channel is set to ;

– otherwise, the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

Modulation Order

TBS Index

0

2

2

0

1

2

2

1

2

2

2

2

3

2

2

3

4

2

2

4

5

2

4

5

6

2

4

6

7

2

4

7

8

2

4

8

9

2

4

9

10

4

6

9

11

4

6

10

12

4

6

11

13

4

6

12

14

4

6

13

15

4

6

14

16

4

6

15

17

6

6

15

18

6

6

16

19

6

6

17

20

6

6

18

21

6

6

19

22

6

6

20

23

6

6

21

24

6

6

22

25

6

6

23

26

6

6

24

27

6

6

25

28

6

6

26/26A

29

2

2

reserved

30

4

4

31

6

6

[TS 36.213 clause 7.1.7.2]

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

– for DCI format 1A or DCI format 6-1A:

– the UE shall set the TBS index () equal to and determine its TBS by the procedure in subclause 7.1.7.2.1 for .

else if the higher layer parameter altCQI-Table-r12 is configured, then

– for DCI format 1A with CRC scrambled by C-RNTI and for DCI format 1/1A/2/2A/2B/2C/2D with CRC scrambled by SPS C-RNTI:

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a26 in tbsIndexAlt, is 26A; otherwise is 26. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

– In DCI formats 2, 2A, 2B, 2C and 2D a transport block is disabled if and if rvidx = 1 otherwise the transport block is enabled.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH/MPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

26A

7224

7736

8504

9144

9912

10296

11064

11832

12576

12960

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

26A

13536

14112

15264

15840

16416

16992

17568

18336

19080

19848

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

26A

20616

20616

21384

22152

22920

23688

24496

24496

25456

26416

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

26A

26416

27376

27376

29296

29296

29296

30576

30576

31704

32856

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

26A

32856

34008

34008

35160

36696

36696

36696

37888

37888

39232

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

26A

40576

40576

40576

40576

42368

42368

43816

43816

45352

45352

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

26A

45352

46888

46888

48936

48936

48936

51024

51024

51024

52752

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

26A

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

26A

59256

59256

59256

61664

61664

61664

63776

63776

63776

66592

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

26A

66592

66592

66592

68808

68808

68808

71112

71112

71112

71112

1

2

3

4

5

6

7

8

9

10

27

648

1320

1992

2664

3368

4008

4584

5352

5992

6712

28

680

1384

2088

2792

3496

4264

4968

5544

6200

6968

29

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

30

776

1544

2344

3112

3880

4776

5544

6200

6968

7736

31

808

1608

2472

3240

4136

4968

5736

6456

7480

8248

32

840

1672

2536

3368

4264

5160

5992

6712

7736

8504

33

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

33A

840

1736

2600

3496

4392

5160

5992

6968

7736

8760

11

12

13

14

15

16

17

18

19

20

27

7224

7992

8504

9144

9912

10680

11448

11832

12576

12960

28

7736

8504

9144

9912

10680

11064

11832

12576

13536

14112

29

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

30

8504

9528

10296

11064

11832

12576

13536

14112

14688

15840

31

9144

9912

10680

11448

12216

12960

14112

14688

15840

16416

32

9528

10296

11064

11832

12960

13536

14688

15264

16416

16992

33

10680

11832

12960

13536

14688

15840

16992

17568

19080

19848

33A

9528

10296

11448

12216

12960

14112

14688

15840

16416

17568

21

22

23

24

25

26

27

28

29

30

27

14112

14688

15264

15840

16416

16992

17568

18336

19080

19848

28

14688

15264

16416

16992

17568

18336

19080

19848

20616

21384

29

15840

16416

16992

17568

18336

19080

19848

20616

21384

22152

30

16416

16992

18336

19080

19848

20616

21384

22152

22920

23688

31

17568

18336

19080

19848

20616

21384

22152

22920

23688

24496

32

17568

19080

19848

20616

21384

22152

22920

23688

24496

25456

33

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

33A

18336

19080

19848

20616

22152

22920

23688

24496

25456

26416

31

32

33

34

35

36

37

38

39

40

27

20616

21384

22152

22920

22920

23688

24496

25456

25456

26416

28

22152

22152

22920

23688

24496

25456

26416

26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

33A

27376

27376

29296

29296

30576

30576

31704

32856

34008

35160

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

33A

35160

36696

36696

37888

39232

40576

40576

40576

42368

43816

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

33A

43816

45352

45352

46888

48936

48936

48936

51024

51024

52752

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

33A

52752

55056

55056

55056

57336

57336

57336

59256

59256

61664

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

33A

61664

61664

63776

63776

66592

66592

66592

68808

68808

68808

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

33A

71112

71112

71112

73712

75376

75376

76208

76208

78704

78704

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

33A

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

33A

87936

87936

87936

90816

90816

90816

93800

93800

93800

97896

[TS 36.213 clause 7.1.7.2.2]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

For, a baseline TBS_L1 is taken from the (,) entry of Table 7.1.7.2.1-1, which is then translated into TBS_L2 using the mapping rule shown in Table 7.1.7.2.2-1. The TBS is given by TBS_L2.

Table 7.1.7.2.2-1: One-layer to two-layer TBS translation table

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

TBS_L1

TBS_L2

1544

3112

3752

7480

10296

20616

28336

57336

1608

3240

3880

7736

10680

21384

29296

59256

1672

3368

4008

7992

11064

22152

30576

61664

1736

3496

4136

8248

11448

22920

31704

63776

1800

3624

4264

8504

11832

23688

32856

66592

1864

3752

4392

8760

12216

24496

34008

68808

1928

3880

4584

9144

12576

25456

35160

71112

1992

4008

4776

9528

12960

25456

36696

73712

2024

4008

4968

9912

13536

27376

37888

76208

2088

4136

5160

10296

14112

28336

39232

78704

2152

4264

5352

10680

14688

29296

40576

81176

2216

4392

5544

11064

15264

30576

42368

84760

2280

4584

5736

11448

15840

31704

43816

87936

2344

4776

5992

11832

16416

32856

45352

90816

2408

4776

6200

12576

16992

34008

46888

93800

2472

4968

6456

12960

17568

35160

48936

97896

2536

5160

6712

13536

18336

36696

51024

101840

2600

5160

6968

14112

19080

37888

52752

105528

2664

5352

7224

14688

19848

39232

55056

110136

2728

5544

7480

14688

20616

40576

57336

115040

2792

5544

7736

15264

21384

42368

59256

119816

2856

5736

7992

15840

22152

43816

61664

124464

2984

5992

8248

16416

22920

45352

63776

128496

3112

6200

8504

16992

23688

46888

66592

133208

3240

6456

8760

17568

24496

48936

68808

137792

3368

6712

9144

18336

25456

51024

71112

142248

3496

6968

9528

19080

26416

52752

73712

146856

3624

7224

9912

19848

27376

55056

75376

149776

76208

152976

81176

161760

87936

175600

93800

187712

78704

157432

84760

169544

90816

181656

97896

195816

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 1bis

10296

10296

250368

1

DL Category 4

150752

75376

1827072

2

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-807744 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1211616 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM) , if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM), if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

19488768

2 or 4 [or 8]

DL Category 20

1948064 – 2019360 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

24360960

2 or 4 [or 8]

DL Category 21

1348960 – 1413120 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

201936 (4 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM, if alternativeTBS-Index-r14 is not supported)

100752 (2 layers, 256QAM, if alternativeTBS-Index-r14 is supported)

17052672

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports “Maximum number of UL-SCH transport block bits transmitted within a TTI” and “Maximum number of bits of an UL-SCH transport block transmitted within a TTI” of 2984 bits if the UE indicates support of ce-pusch-nb-maxTbs-r14. Otherwise the UE supports 1000 bits.

7.1.7.1.12a.3 Test description

7.1.7.1.12a.3.1 Pre-test conditions

System Simulator

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble

– The UE is in state Loopback Activated (state 4) according to [18] condition 4TX to configure MIMO.

7.1.7.1.12a.3.2 Test procedure sequence

Table 7.1.7.1.12a.3.2-1: Maximum TBsize for different UE categories (3 and 4 Layers, 256QAM)

UE Category

Maximum number of bits of a DL-SCH transport block received within a TTI

Support of alternativeTBS-Index-r14

(Note 1)

Category 11

195816

Category 12

195816

Category 13

195816

Category 15

195816

No

201936

Yes

Category 16

195816

No

201936

Yes

Category 18

195816

No

201936

Yes

Category 19

195816

No

201936

Yes

Category 20

195816

No

201936

Yes

Category 21

195816

No

201936

Yes

NOTE 1: If the UE under test supports alternativeTBS-Index-r14 then shall the limit for Maximum number of bits of a DL-SCH transport block received within a TTI marked as ‘Yes’ be used else shall the limit marked as ‘No’ be used.

Table 7.1.7.1.12a.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data for transport block 1 and transport block 2

Total TBsize (sum of the sizes of TBsize#1 and TBsize#2)

(bits)

Number of PDCP SDUs

PDCP SDU size

(bits]

See note 1

See note 2

1

8*FLOOR((TBsize – 120)/8)

2

8*FLOOR((TBsize – 152)/16)

3

8*FLOOR((TBsize – 176)/24)

4

8*FLOOR((TBsize – 208)/32)

5

8*FLOOR((TBsize – 232)/40)

6

8*FLOOR((TBsize – 264)/48)

7

8*FLOOR((TBsize – 288)/56)

8

8*FLOOR((TBsize – 320)/64)

9

8*FLOOR((TBsize – 348)/72)

10

8*FLOOR((TBsize – 376)/80)

11

8*FLOOR((TBsize – 400)/88)

12

8*FLOOR((TBsize – 432)/96)

13

8*FLOOR((TBsize – 456)/104)

14

8*FLOOR((TBsize – 488)/112)

15

8*FLOOR((TBsize – 512)/120)

16

8*FLOOR((TBsize – 544)/128)

17

8*FLOOR((TBsize – 568)/136)

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (Total TBsize –N*PDCP header size – AMD PDU header size – – MAC header size – Size of Timing Advance– RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is CEIL[(Number of TBs *16+(N-1)*12)/8] bytes which includes one 16 bit standard AM header per TB and N-1 Length indicators of 12 bits corresponding to the worst case when one of the PDCP SDU is split between the two transport blocks. If no PDCP SDU is split between the transport blocks then there will be only N-2 LIs and MAC padding will occur instead of one LI;

MAC header size = R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for RLC data PDU)+ Number of TBs R/R/E/LCID MAC subheaders (8 bits for MAC SDU for RLC status PDU) = 8 +24 + Number of TBs * 8 bits; If status PDU is not included or, MAC LI is included for MAC SDU for RLC status PDU instead of RLC data PDU, MAC padding will occur in place of unused bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance needs to be sent, padding will occur instead);

RLC Status PDU size = 16 bits (including one ACK SQN triggered in execution X+1, due to loop back transmission in execution X and as all loop backed PDUs in execution X have been correctly received, the status PDU will carry an ACK SQN only.

This gives:

PDCP SDU size = 8*FLOOR((Total TBsize – N*16- 8*CEIL((2*16+(N-1)*12)/8) – 72)/(8*N)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest total TBsize that can be tested (corresponding to N=1, and PDCP SDU size of 16) is 136 bits.

Table 7.1.7.1.12a.3.2-2a: Bandwidth Dependent Parameters (RA type 0)

Max Bandwidth

Max

Allowed Values

5 MHz

25

1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25

10 MHz

50

2, 3, 5, 6, 8, 9, 11, 12, 14, 15, 17, 18, 20, 21, 23, 24, 26, 27, 29, 30, 32, 33, 35, 36, 38, 39, 41, 42, 44, 45, 47, 48, 50

15 MHz

75

3, 4, 7, 8, 11, 12, 15, 16, 19, 20, 23, 24, 27, 28, 31, 32, 35, 36, 39, 40, 43, 44 ,47, 48, 51, 52, 55, 56, 59, 60, 63, 64, 67, 68, 71, 72, 75

20 MHz

100

4, 8, 12, 16, 20, 24, 28, 32, 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92, 96, 100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.12a.3.2-2b: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.12a.3.2-2c: Bandwidth Dependent Parameters (RA type 1)

Max Bandwidth

Max

5 MHz

25

11

10 MHz

50

14

15 MHz

75

16

20 MHz

100

22

Note : Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.1.12a.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

SS Transmits RRCConnectionReconfiguration to configure altCQI-Table-r12

<–

2

The UE transmits RRCConnectionReconfigurationComplete

–>

EXCEPTION: Steps 3 to 7 are repeated for allowed values of as per table 7.1.7.1.12a.3.2-2a and for each from 0 to 27

3

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of .

SS looks up TBsize#1 in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

SS looks up TBsize#2 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

The SS uses the same for both transport blocks:

= =

EXCEPTION: Steps 4 to 7 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.12a.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.12a.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

4

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.12a.3.2-2.

5

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 0 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation, Transport block to codeword swap flag set to ‘0’, coding scheme for transport block 1 and for transport block 2 and Precoding information set to ’1’ for 3 Layers spatial multiplexing. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 0, RBA(), Transport block to codeword swap flag=’0’, , , Precoding information=’1’)

6

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

7

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 5?

–>

(N x PDCP SDUs)

1

P

EXCEPTION: Steps 8 to 12 are repeated for allowed values of as per table 7.1.7.1.12a.3.2-2c and for each from 0 to 27

8

SS looks up in table 7.1.7.1-1A in TS 36.213 based on the value of .

SS looks up TBsize#1 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

SS looks up TBsize#2 as specified in TS 36.213 clause 7.1.7.2.2 based on values of and .

The SS uses the same for both transport blocks:

= =

EXCEPTION: Steps 4 to 7 are performed if the sum of the sizes of TBsize#1 and TBsize#2 is less than or equal to UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.12a.3.2-1 and larger than or equal to 136 bits as specified in Table 7.1.7.1.12a.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.931.

9

SS creates one or more PDCP SDUs for transport block 1 and 2 depending on TBsize#1, and TBsize#2 in accordance with Table 7.1.7.1.12a.3.2-2.

10

SS transmits the PDCP SDUs for transport block 1 and 2 concatenated into a MAC PDU per transport block and indicates on PDCCH DCI Format 2A with RA type 1 and a resource block assignment (RBA) correspondent to as specified in 7.1.6.1 in TS 36.213 and modulation, Transport block to codeword swap flag set to ‘1’, coding scheme for transport block 1 and for transport block 2 and Precoding information set to ’2’ for 4 Layers spatial multiplexing. The N PDCP SDUs are split between MAC PDU 1 and 2;

<–

Transport block 1:

MAC PDU

Transport block 2:

MAC PDU

DCI: (DCI Format 2A, RA type 1, RBA(), Transport block to codeword swap flag=’1’, , , Precoding information=’2’)

11

SS transmits one or more UL Grants sufficient for transmitting loop back PDCP SDUs.

<–

(UL Grant)

12

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 10?

–>

(N x PDCP SDUs)

1

P

7.1.7.1.12a.3.3 Specific Message Contents

Table 7.1.7.1.12a.3.3-1: PhysicalConfigDedicated-DEFAULT in RRCConnectionReconfiguration (Step 1)

Derivation Path: 36.508 Table 4.8.2.1.6-1

Information Element

Value/remark

Comment

Condition

PhysicalConfigDedicated SEQUENCE {

cqi-ReportConfigPCell-v1250 SEQUENCE {

altCQI-Table-r12

allSubframes

}

}

Table 7.1.7.1.12a.3.3-2: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-Category-v11a0

Checked against UE Category indications in the PICS

UE category 11, 12

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 SEQUENCE (SIZE (1..maxBands)) OF {

dl-256QAM-r12

supported

}

}

ue-CategoryDL-r12

Checked against UE Category indications in the PICS

UE category DL 11, 12, 13

ue-CategoryUL-r12

Not checked

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1260

Checked against UE Category indications in the PICS

UE category DL 15, 16

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1330

Checked against UE Category indications in the PICS

UE category DL 18, 19

nonCriticalExtension SEQUENCE{

nonCritialExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

nonCriticalExtension SEQUENCE{

ue-CategoryDL-v1450

Checked against UE Category indications in the PICS

UE category DL 20

nonCriticalExtension SEQUENCE {

ue-CategoryDL-v1460

Checked against UE Category indications in the PICS

UE category DL 21

nonCriticalExtension SEQUENCE {}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.1.13 DL-SCH transport block size selection / DCI format 6-1A / RA type 2 / Localised VRB

7.1.7.1.13.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on MPDCCH receives DCI format 6-1A Resource Allocation Type 2 with Localized VRB indicating a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

7.1.7.1.13.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.211, clause 6.2.7; TS 36.212, clause 5.3.3.1.12; TS 36.213, clauses 7.1.6, 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1A.

[TS 36.211 clause 6.2.7]

A narrowband is defined as six non-overlapping consecutive physical resource blocks in the frequency domain. The total number of downlink narrowbands in the downlink transmission bandwidth configured in the cell is given by

The narrowbands are numbered in order of increasing physical resource-block number where narrowband is composed of physical resource-block indices

where

[TS 36.212 clause 5.3.3.1.12]

DCI format 6-1A is used for the compact scheduling of one PDSCH codeword in one cell and random access procedure initiated by a PDCCH order. The DCI corresponding to a PDCCH order can be carried by MPDCCH.

The following information is transmitted by means of the DCI format 6-1A:

– Flag format 6-0A/format 6-1A differentiation – 1 bit, where value 0 indicates format 6-0A and value 1 indicates format 6-1A

Format 6-1A is used for random access procedure initiated by a PDCCH order only if format 6-1A CRC is scrambled with C-RNTI and all the remaining fields are set as follows:

Otherwise

– Frequency hopping flag – 1 bit, where value 0 indicates frequency hopping is not enabled and value 1 indicates frequency hopping is enabled as defined in section 6.4.1 of [2]

– Resource block assignment – +5 bits for PDSCH as defined in [3]:

MSB bits provide the narrowband index as defined in section 6.2.7 of [2]

– 5 bits provide the resource allocation using DL resource allocation type 2 within the indicated narrowband

– Modulation and coding scheme – 4 bits as defined in section 7.1.7 of [3]

– Repetition number – 2 bits as defined in section 7.1.11 of [3]

– HARQ process number – 3 bits (for cases with FDD primary cell), 4 bits (for cases with TDD primary cell)

– New data indicator – 1 bit

– Redundancy version – 2 bits

– TPC command for PUCCH – 2 bits as defined in section 5.1.2.1 of [3]

– If the format 6-1A CRC is scrambled by RA-RNTI:

– The most significant bit of the TPC command is reserved.

– The least significant bit of the TPC command indicates column of the TBS table defined of [3].

– If least significant bit is 0 then = 2 else = 3.

– Else

– The two bits including the most significant bit indicate the TPC command

– Downlink Assignment Index – number of bits as specified in Table 5.3.3.1.2-2. This field is reserved when the configured maximum repetition number is larger than 1 for either PDSCH or MPDCCH.

– Antenna port(s) and scrambling identity – 2 bits indicating the values 0 to 3, as specified in Table 5.3.3.1.5C-1. This field is present only if PDSCH transmission is configured with TM9.

– SRS request –1 bit. The interpretation of this field is provided in section 8.2 of [3]

– TPMI information for precoding – number of bits as specified in Table 5.3.3.1.3A-1.

– TPMI information indicates which codebook index is used in Table 6.3.4.2.3-1 or Table 6.3.4.2.3-2 of [2] corresponding to the single-layer transmission. This field is present only if PDSCH transmission is configured with TM6.

– PMI confirmation for precoding – 1 bit as specified in Table 5.3.3.1.3A-2. This field is present only if PDSCH transmission is configured with TM6.

– HARQ-ACK resource offset – 2 bits as defined in section 10.1 of [3]

– DCI subframe repetition number – 2 bits as defined in section 9.1.5 of [3]

When the format 6-1A CRC is scrambled with a RA-RNTI, then the following fields among the fields above are reserved:

– HARQ process number

– New data indicator

– Downlink Assignment Index

– HARQ-ACK resource offset

If the UE is not configured to decode MPDCCH with CRC scrambled by the C-RNTI, and the number of information bits in format 6-1A is less than that of format 6-0A, zeros shall be appended to format 6-1A until the payload size equals that of format 6-0A.

If the UE is configured to decode MPDCCH with CRC scrambled by the C-RNTI and the number of information bits in format 6-1A mapped onto a given search space is less than that of format 6-0A for scheduling the same serving cell and mapped onto the same search space, zeros shall be appended to format 6-1A until the payload size equals that of format 6-0A.

[TS 36.213 clause 7.1.6]

MPDCCH with DCI format 6-1A a type 2 resource allocation. Resource allocation for PDCCH with DCI format 6-1B is given by the Resource block assignment field as described in [4]. MPDCCH with DCI format 6-2 assigns a set of six contiguously allocated localized virtual resource blocks within a narrowband. Localized virtual resource blocks are always used in case of MPDCCH with DCI format 6-1A, 6-1B, or 6-2.

For a BL/CE UE, the resource allocation for PDSCH carrying SystemInformationBlockType1-BR and SI messages is a set of six contiguously allocated localized virtual resource blocks within a narrowband. The number of repetitions for the PDSCH carrying SystemInformationBlockType1-BR is determined based on the parameter schedulingInfoSIB1-BR-r13 configured by higher-layers and according to Table 7.1.6-1. If the value of the parameter schedulingInfoSIB1-BR-r13 configured by higher-layers is set to 0, UE assumes that SystemInformationBlockType1-BR is not transmitted.

[TS 36.213 clause 7.1.6.3]

For BL/CE UEs with resource allocation type 2 resource assignment, and is used in the rest of this subclause.

In resource allocations of type 2, the resource block assignment information indicates to a scheduled UE a set of contiguously allocated localized virtual resource blocks or distributed virtual resource blocks. In case of resource allocation signalled with PDCCH DCI format 1A, 1B or 1D, or for resource allocation signalled with EPDCCH DCI format 1A, 1B, or 1D, one bit flag indicates whether localized virtual resource blocks or distributed virtual resource blocks are assigned (value 0 indicates Localized and value 1 indicates Distributed VRB assignment) while distributed virtual resource blocks are always assigned in case of resource allocation signalled with PDCCH DCI format 1C. Localized VRB allocations for a UE vary from a single VRB up to a maximum number of VRBs spanning the system bandwidth. For DCI format 1A the distributed VRB allocations for a UE vary from a single VRB up to VRBs, where is defined in [3], if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI. With PDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI or Temporary C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With EPDCCH DCI format 1B, 1D with a CRC scrambled by C-RNTI, or with DCI format 1A with a CRC scrambled with C-RNTI, SPS C-RNTI distributed VRB allocations for a UE vary from a single VRB up to VRBs if is 6-49 and vary from a single VRB up to 16 if is 50-110. With PDCCH DCI format 1C, distributed VRB allocations for a UE vary from VRB(s) up to VRBs with an increment step of , where value is determined depending on the downlink system bandwidth as shown in Table 7.1.6.3-1.

Table 7.1.6.3-1: values vs. Downlink System Bandwidth

System BW ()

DCI format 1C

6-49

2

50-110

4

For PDCCH DCI format 1A, 1B or 1D, or for EPDCCH DCI format 1A, 1B, or 1D, or for MPDCCH DCI format 6-1A, a type 2 resource allocation field consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of virtually contiguously allocated resource blocks. The resource indication value is defined by

if then

else

where≥ 1 and shall not exceed .

For PDCCH DCI format 1C, a type 2 resource block assignment field consists of a resource indication value (RIV) corresponding to a starting resource block (=, , ,…, ) and a length in terms of virtually contiguously allocated resource blocks (=, ,…, ).
The resource indication value is defined by:

if then

else:

where , and . Here,

≥ 1 and shall not exceed .

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– if the UE is a BL/CE UE

– if PDSCH is assigned by MPDCCH DCI format 6-1A or 6-2

– read the 4-bit "modulation and coding scheme ()" field in the DCI

– The UE is not expected to receive a DCI format 6-1A indicating or a DCI format 6-2 indicating

– else if PDSCH is assigned by MPDCCH DCI format 6-1B

– read the 4-bit "modulation and coding scheme ()" field in the DCI and set =.

– else if the UE is a BL/CE UE and if PDSCH carriers SystemInformationBlockType1-BR

– set to the value of the parameter schedulingInfoSIB1-BR-r13 configured by higher-layers

– otherwise

– read the 5-bit "modulation and coding scheme" field () in the DCI

and second if the PDCCH DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else

– if the UE is a BL/CE UE

– if PDSCH is assigned by MPDCCH DCI format 6-2

– use Table 7.1.7.2.3-1 for determining its transport block size.

– else if PDSCH carriers SystemInformationBlockType1-BR

– use subclause 7.1.7.2.7 for determining its transport block size.

– otherwise,

– set to the total number of allocated PRBs based on the procedure defined in subclause 7.1.6.

– set the Table 7.1.7.2.1-1 column indicator .

– if PDSCH is assigned by MPDCCH DCI format 6-1B

– use subclause 7.1.7.2.6 for determining its transport block size.

– otherwise

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

For BL/CE UEs configured with CEModeA, is used in place of in the rest of this subclause.

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, or if PDSCH is assigned by MPDCCH DCI Format 6-1B, or if PDSCH carriers SystemInformationBlockType1-BR, or if PDSCH carries BL/CE SI messages, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26/26A

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33/33A

28

2

reserved

29

4

30

6

31

8

For BL/CE UEs, the same redundancy version is applied to PDSCH transmitted in a given block of consecutive subframes. The subframe number of the first subframe in each block of consecutive subframes, denoted as , satisfies , where for FDD and for TDD. Denote as the subframe number of the first downlink subframe intended for PDSCH. The PDSCH transmission spans consecutive subframes including non-BL/CE subframes where the PDSCH transmission is postponed. Note that BL/CE subframe(s) refers to either BL/CE DL subframe(s) or BL/CE UL subframe(s). For the block of consecutive subframes, the redundancy version (rvidx) for PDSCH is determined according to Table 7.1.7.1-2 using , where and. The blocks of subframes are sequential in time, starting with to which subframe belongs. For a BL/CE UE configured in CEModeA, and is determined by the ‘Redundancy version’ field in DCI format 6-1A. For a BL/CE UE configured with CEModeB, for FDD and for TDD, and .

Table 7.1.7.1-2: Redundancy version

Redundancy version Index

rvidx

0

0

1

2

2

3

3

1

[TS 36.213 clause 7.1.7.2]

For BL/CE UEs configured with CEModeA, is used in place of in the rest of this subclause

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else if the higher layer parameter altCQI-Table-r12 is configured, then

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a26 in tbsTableAlt, is 26A; otherwise is 26. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH/MPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M1

1000

1000

25344

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

1000

1000

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1

UL Category M1

20 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

7.1.7.1.13.3 Test description

7.1.7.1.13.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeA according to [18].

7.1.7.1.13.3.2 Test procedure sequence

Table 7.1.7.1.13.3.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.13.3.2-2: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 5 are repeated for values of from 1 to Max 6 and from 0 to 15.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 5 are performed if TBsize is less than or equal to 1000 bits

UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.13.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.13.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one PDCP SDU of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

3

SS transmits the PDCP SDU concatenated into a MAC PDU and indicates on PDCCH DCI Format 6-1A with RA type 2 using Localized VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 6-1A is less than that of format 6-0A, zeros shall be appended by the SS to format 6-1A until the payload size equals that of format 6-0A.

If the number of information bits in format 6-1A belongs to one of the sizes in Table 7.1.7.1.13.3.2-1, one zero bit shall be appended by the SS to format 6-1A.

<–

MAC PDU (PDCP SDU)

DCI: (DCI Format 6-1A, RA type 2, RBA(), )

4

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

5

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 3?

–>

(PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 1000bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.1.13.3.3 Specific Message Contents

Table 7.1.7.1.13.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

7.1.7.1.13a DL-SCH transport block size selection / DCI format 6-1A / RA type 2 / Localised VRB / CAT M2

7.1.7.1.13a.1 Test Purpose (TP)

Same as clause 7.1.7.1.13.1.

7.1.7.1.13a.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.211, clause 6.2.7; TS 36.212, clause 5.3.3.1.12; TS 36.213, clauses 7.1.6, 7.1.6.3, 7.1.7, 7.1.7.1, 7.1.7.2 and 7.1.7.2.1; and TS 36.306 clause 4.1A.

Same as clause 7.1.7.1.13.2 with exception for:

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.1.13a.3 Test description

7.1.7.1.13a.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeA according to [18].

7.1.7.1.13a.3.2 Test procedure sequence

Table 7.1.7.1.13a.3.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.13a.3.2-2: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 5 are repeated for values of from 1 to Max 6 and from 0 to 15.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

Steps 2 to 5 are performed if TBsize is less than or equal to 4008 and larger than or equal to 104 bits, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one PDCP SDU of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

3

SS transmits the PDCP SDU concatenated into a MAC PDU and indicates on PDCCH DCI Format 6-1A with RA type 2 using Localized VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 6-1A is less than that of format 6-0A, zeros shall be appended by the SS to format 6-1A until the payload size equals that of format 6-0A.

If the number of information bits in format 6-1A belongs to one of the sizes in Table 7.1.7.1.13a.3.2-1, one zero bit shall be appended by the SS to format 6-1A.

<–

MAC PDU (PDCP SDU)

DCI: (DCI Format 6-1A, RA type 2, RBA(), )

4

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

5

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 3?

–>

(PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 4008bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.1.13a.3.3 Specific Message Contents

Same as clause 7.1.7.1.13.3.3.

7.1.7.1.14 DL-SCH transport block size selection / DCI format 6-1B

7.1.7.1.14.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE on MPDCCH receives DCI format 6-1B indicating a resource block assignment correspondent to physical resource blocks and a modulation and coding scheme }

then { UE decodes the received transport block of size correspondent to the read and and forwards it to higher layers }

}

7.1.7.1.14.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.211, clause 6.2.7; TS 36.213, clauses 7.1.6, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.1 and 7.1.7.2.6; and TS 36.306 clause 4.1A.

[TS 36.211 clause 6.2.7]

A narrowband is defined as six non-overlapping consecutive physical resource blocks in the frequency domain. The total number of downlink narrowbands in the downlink transmission bandwidth configured in the cell is given by

The narrowbands are numbered in order of increasing physical resource-block number where narrowband is composed of physical resource-block indices

where

[TS 36.213 clause 7.1.6]

MPDCCH with DCI format 6-1A a type 2 resource allocation. Resource allocation for PDCCH with DCI format 6-1B is given by the Resource block assignment field as described in [4]. MPDCCH with DCI format 6-2 assigns a set of six contiguously allocated localized virtual resource blocks within a narrowband. Localized virtual resource blocks are always used in case of MPDCCH with DCI format 6-1A, 6-1B, or 6-2.

For a BL/CE UE, the resource allocation for PDSCH carrying SystemInformationBlockType1-BR and SI messages is a set of six contiguously allocated localized virtual resource blocks within a narrowband. The number of repetitions for the PDSCH carrying SystemInformationBlockType1-BR is determined based on the parameter schedulingInfoSIB1-BR-r13 configured by higher-layers and according to Table 7.1.6-1. If the value of the parameter schedulingInfoSIB1-BR-r13 configured by higher-layers is set to 0, UE assumes that SystemInformationBlockType1-BR is not transmitted.

[TS 36.213 clause 7.1.7]

To determine the modulation order and transport block size(s) in the physical downlink shared channel, the UE shall first

– if the UE is a BL/CE UE

– else if PDSCH is assigned by MPDCCH DCI format 6-1B

– read the 4-bit "modulation and coding scheme ()" field in the DCI and set =.

else

– if the UE is a BL/CE UE

– if PDSCH is assigned by MPDCCH DCI format 6-1B

– use subclause 7.1.7.2.6 for determining its transport block size.

– otherwise

The UE may skip decoding a transport block in an initial transmission if the effective channel code rate is higher than 0.931, where the effective channel code rate is defined as the number of downlink information bits (including CRC bits) divided by the number of physical channel bits on PDSCH. If the UE skips decoding, the physical layer indicates to higher layer that the transport block is not successfully decoded. For the special subframe configurations 0 and 5 with normal downlink CP or configurations 0 and 4 with extended downlink CP, shown in Table 4.2-1 of [3], there shall be no PDSCH transmission in DwPTS of the special subframe.

[TS 36.213 clause 7.1.7.1]

For BL/CE UEs configured with CEModeA, is used in place of in the rest of this subclause.

The UE shall use = 2 if the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI, or if PDSCH is assigned by MPDCCH DCI Format 6-1B, or if PDSCH carriers SystemInformationBlockType1-BR, or if PDSCH carries BL/CE SI messages, otherwise,

– if the higher layer parameter altCQI-Table-r12 is configured, and if the PDSCH is assigned by a PDCCH/EPDCCH with DCI format 1/1B/1D/2/2A/2B/2C/2D with CRC scrambled by C-RNTI,

– the UE shall useand Table 7.1.7.1-1A to determine the modulation order () used in the physical downlink shared channel.

– else

– the UE shall useand Table 7.1.7.1-1 to determine the modulation order () used in the physical downlink shared channel.

Table 7.1.7.1-1: Modulation and TBS index table for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

4

9

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

16

4

15

17

6

15

18

6

16

19

6

17

20

6

18

21

6

19

22

6

20

23

6

21

24

6

22

25

6

23

26

6

24

27

6

25

28

6

26/26A

29

2

reserved

30

4

31

6

Table 7.1.7.1-1A: Modulation and TBS index table 2 for PDSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

2

2

2

4

3

2

6

4

2

8

5

4

10

6

4

11

7

4

12

8

4

13

9

4

14

10

4

15

11

6

16

12

6

17

13

6

18

14

6

19

15

6

20

16

6

21

17

6

22

18

6

23

19

6

24

20

8

25

21

8

27

22

8

28

23

8

29

24

8

30

25

8

31

26

8

32

27

8

33/33A

28

2

reserved

29

4

30

6

31

8

For BL/CE UEs, the same redundancy version is applied to PDSCH transmitted in a given block of consecutive subframes. The subframe number of the first subframe in each block of consecutive subframes, denoted as , satisfies , where for FDD and for TDD. Denote as the subframe number of the first downlink subframe intended for PDSCH. The PDSCH transmission spans consecutive subframes including non-BL/CE subframes where the PDSCH transmission is postponed. Note that BL/CE subframe(s) refers to either BL/CE DL subframe(s) or BL/CE UL subframe(s). For the block of consecutive subframes, the redundancy version (rvidx) for PDSCH is determined according to Table 7.1.7.1-2 using , where and. The blocks of subframes are sequential in time, starting with to which subframe belongs. For a BL/CE UE configured in CEModeA, and is determined by the ‘Redundancy version’ field in DCI format 6-1A. For a BL/CE UE configured with CEModeB, for FDD and for TDD, and .

Table 7.1.7.1-2: Redundancy version

Redundancy version Index

rvidx

0

0

1

2

2

3

3

1

[TS 36.213 clause 7.1.7.2]

For BL/CE UEs configured with CEModeA, is used in place of in the rest of this subclause

If the DCI CRC is scrambled by P-RNTI, RA-RNTI, or SI-RNTI then

else if the higher layer parameter altCQI-Table-r12 is configured, then

else

– for, the UE shall first determine the TBS index () usingand Table 7.1.7.1-1 except if the transport block is disabled in DCI formats 2, 2A, 2B, 2C and 2D as specified below. When , if the UE is scheduled by DCI formats 2C/2D and is configured with a26 in tbsTableAlt, is 26A; otherwise is 26. For a transport block that is not mapped to more than single-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.1. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.2. For a transport block that is mapped to three-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.4. For a transport block that is mapped to four-layer spatial multiplexing, the TBS is determined by the procedure in subclause 7.1.7.2.5.

– for, the TBS is assumed to be as determined from DCI transported in the latest PDCCH/EPDCCH for the same transport block using . If there is no PDCCH/EPDCCH for the same transport block using, and if the initial PDSCH for the same transport block is semi-persistently scheduled, the TBS shall be determined from the most recent semi-persistent scheduling assignment PDCCH/EPDCCH.

The NDI and HARQ process ID, as signalled on PDCCH/EPDCCH/MPDCCH, and the TBS, as determined above, shall be delivered to higher layers.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

[TS 36.213 clause 7.1.7.2.6]

The UE shall set and determine its TBS by the procedure in subclause 7.1.7.2.1 for , and = 4 or= 6.

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

1000

1000

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1

UL Category M1

20 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

DL Category 18

UL Category 3

11 800 000

21 600 000

DL Category 18

UL Category 5

12 000 000

21 800 000

DL Category 18

UL Category 7

12 300 000

22 100 000

DL Category 18

UL Category 13

12 700 000

22 500 000

DL Category 19

UL Category 3

16 000 000

28 300 000

DL Category 19

UL Category 5

16 300 000

28 500 000

DL Category 19

UL Category 7

16 500 000

28 800 000

DL Category 19

UL Category 13

17 000 000

29 200 000

7.1.7.1.14.3 Test description

7.1.7.1.14.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeB according to [18].

7.1.7.1.14.3.2 Test procedure sequence

Table 7.1.7.1.14.3.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.14.3.2-2: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 5 are repeated for values of 4 and 6 and from 0 to 9.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 2 to 5 are performed if TBsize is less than or equal to 1000 bits

UE capability “Maximum number of DL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.1.13.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.1.13.3.2-2, and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one PDCP SDU of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

3

SS transmits the PDCP SDU concatenated into a MAC PDU and indicates on PDCCH DCI Format 6-1B with RA type 2 using Localized VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 6-1B is less than that of format 6-0B, zeros shall be appended by the SS to format 6-1B until the payload size equals that of format 6-0B.

If the number of information bits in format 6-1B belongs to one of the sizes in Table 7.1.7.1.13.3.2-1, one zero bit shall be appended by the SS to format 6-1B.

<–

MAC PDU (PDCP SDU)

DCI: (DCI Format 6-1B, RA type 2, RBA(), )

4

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

5

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 3?

–>

(PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 1000bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.1.14.3.3 Specific Message Contents

Table 7.1.7.1.14.3.3.1: MAC-MainConfig-RBC (preamble Table 4.5.3.3-1 [18]: Step 8)

Derivation Path: 36.508 Table 4.8.2.1.5-1

Information Element

Value/remark

Comment

Condition

retxBSR-Timer

sf320

7.1.7.1.14a DL-SCH transport block size selection / DCI format 6-1B / CAT M2

7.1.7.1.14a.1 Test Purpose (TP)

Same as clause 7.1.7.1.14.1.

7.1.7.1.14a.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.211, clause 6.2.7; TS 36.213, clauses 7.1.6, 7.1.7, 7.1.7.1, 7.1.7.2, 7.1.7.2.1 and 7.1.7.2.6; and TS 36.306 clause 4.1A.

Same as clause 7.1.7.1.14.2 with exception for:

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

DL Category 18

UL Category 3

11 800 000

21 600 000

DL Category 18

UL Category 5

12 000 000

21 800 000

DL Category 18

UL Category 7

12 300 000

22 100 000

DL Category 18

UL Category 13

12 700 000

22 500 000

DL Category 19

UL Category 3

16 000 000

28 300 000

DL Category 19

UL Category 5

16 300 000

28 500 000

DL Category 19

UL Category 7

16 500 000

28 800 000

DL Category 19

UL Category 13

17 000 000

29 200 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.1.14a.3 Test description

7.1.7.1.14a.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeB according to [18].

7.1.7.1.14a.3.2 Test procedure sequence

Table 7.1.7.1.14a.3.2-1: Ambiguous Sizes of Information Bits

{12, 14, 16 ,20, 24, 26, 32, 40, 44, 56}

Table 7.1.7.1.14a.3.2-2: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

EXCEPTION: Steps 1 to 5 are repeated for values of 4 and 6 and from 0 to 9.

1

SS looks up in table 7.1.7.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

Steps 2 to 5 are performed if TBsize is less than or equal to 4008 bits and larger than or equal to 104 bits and the effective channel code rate, as defined in TS 36.213 clause 7.1.7, is lower than or equal to 0.930.

2

SS creates one PDCP SDU of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

3

SS transmits the PDCP SDU concatenated into a MAC PDU and indicates on PDCCH DCI Format 6-1B with RA type 2 using Localized VRB and a resource block assignment (RBA) correspondent to as specified in 7.1.6.3 in TS 36.213 and modulation and coding scheme .

If the number of information bits in format 6-1B is less than that of format 6-0B, zeros shall be appended by the SS to format 6-1B until the payload size equals that of format 6-0B.

If the number of information bits in format 6-1B belongs to one of the sizes in Table 7.1.7.1.13.3.2-1, one zero bit shall be appended by the SS to format 6-1B.

<–

MAC PDU (PDCP SDU)

DCI: (DCI Format 6-1B, RA type 2, RBA(), )

4

At the reception of scheduling request the SS transmits UL Grant for transmitting loop back PDCP SDUs.

<–

(UL Grant)

5

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 3?

–>

(PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 4008bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.1.14a.3.3 Specific Message Contents

Same as clause 7.1.7.1.14.3.3.

7.1.7.2 UL-SCH transport block size support

7.1.7.2.1 UL-SCH transport block size selection / DCI format 0

7.1.7.2.1.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has pending data for transmission and receives a Resource Block Assignment correspondent to physical resource blocks and a modulation and coding scheme for PUSCH scheduling }

then { UE transmits MAC PDU on PUSCH on the granted resources using a transport block size correspondent to the read and }

}

7.1.7.2.1.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.1; TS 36.213, clauses 8.1, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.1; TS 36.211, clause 5.3.3; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.1]

DCI format 0 is used for the scheduling of PUSCH.

The following information is transmitted by means of the DCI format 0:

– Flag for format0/format1A differentiation – 1 bit, where value 0 indicates format 0 and value 1 indicates format 1A

– Hopping flag – 1 bit as defined in section 8.4 of [3]

– Resource block assignment and hopping resource allocation – bits

– For PUSCH hopping:

NUL_hop MSB bits are used to obtain the value of as indicated in subclause [8.4] of [3]

bits provide the resource allocation of the first slot in the UL subframe

– For non-hopping PUSCH:

bits provide the resource allocation in the UL subframe as defined in section 8.1 of [3]

– Modulation and coding scheme and redundancy version – 5 bits as defined in section 8.6 of [3]

[TS 36.213 clause 8.1]

The resource allocation information indicates to a scheduled UE a set of contiguously allocated virtual resource block indices denoted by . A resource allocation field in the scheduling grant consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of contiguously allocated resource blocks (≥ 1). The resource indication value is defined by

if then

else

A UE shall discard PUSCH resource allocation in the corresponding PDCCH with DCI format 0 if consistent control information is not detected.

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme and redundancy version” field () in the DCI, and

– check the “CQI request” bit in DCI, and

– compute the total number of allocated PRBs () based on the procedure defined in Section 8.1, and

– compute the number of coded symbols for control information..

[TS 36.213 clause 8.6.1]

For, the modulation order () is determined as follows:

  • If the UE is capable of supporting 64QAM in PUSCH and has not been configured by higher layers to transmit only QPSK and 16QAM, the modulation order is given by in Table 8.6.1-1.
  • If the UE is not capable of supporting 64QAM in PUSCH or has been configured by higher layers to transmit only QPSK and 16QAM, is first read from Table 8.6.1-1. The modulation order is set to .
  • If the parameter ttiBundling provided by higher layers is set to TRUE, then the resource allocation size is restricted to and the modulation order is set to .

For, If, the “CQI request” bit in DCI format 0 is set to 1 and , the modulation order is set to . Otherwise, the modulation order shall be determined from the DCI transported in the latest PDCCH with DCI format 0 for the same transport block using . If there is no PDCCH with DCI format 0 for the same transport block using , the modulation order shall be determined from

  • the most recent semi-persistent scheduling assignment PDCCH, when the initial PUSCH for the same transport block is semi-persistently scheduled, or,

the random access response grant for the same transport block, when the PUSCH is initiated by the random access response grant.

The UE shall useand Table 8.6.1-1 to determine the redundancy version (rvidx) to use in the physical uplink shared channel.

Table 8.6.1-1: Modulation, TBS index and redundancy version table for PUSCH

MCS Index

Modulation Order

TBS Index

Redundancy Version
rvidx

0

2

0

0

1

2

1

0

2

2

2

0

3

2

3

0

4

2

4

0

5

2

5

0

6

2

6

0

7

2

7

0

8

2

8

0

9

2

9

0

10

2

10

0

11

4

10

0

12

4

11

0

13

4

12

0

14

4

13

0

15

4

14

0

16

4

15

0

17

4

16

0

18

4

17

0

19

4

18

0

20

4

19

0

21

6

19

0

22

6

20

0

23

6

21

0

24

6

22

0

25

6

23

0

26

6

24

0

27

6

25

0

28

6

26

0

29

reserved

1

30

2

31

3

[TS 36.213 clause 8.6.2]

For, the UE shall first determine the TBS index () usingand Table 8.6.1-1. The UE shall then follow the procedure in Section 7.1.7.2.1 to determine the transport block size.

For, If, the “CQI request” bit in DCI format 0 is set to 1 and, then there is no transport block for the UL-SCH and only the control information feedback for the current PUSCH reporting mode is transmitted by the UE. Otherwise, the transport block size shall be determined from the initial PDCCH for the same transport block using . If there is no initial PDCCH with DCI format 0 for the same transport block using , the transport block size shall be determined from

  • the most recent semi-persistent scheduling assignment PDCCH, when the initial PUSCH for the same transport block is semi-persistently scheduled, or,
  • the random access response grant for the same transport block, when the PUSCH is initiated by the random access response grant.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 27×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

12576

12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

16992

15

15840

15840

16416

16416

16992

16992

17568

17568

18336

18336

16

16416

16992

16992

17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

24496

25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

26416

27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

29296

30576

30576

31704

31704

32856

32856

34008

34008

24

31704

31704

32856

32856

34008

34008

35160

35160

36696

36696

25

32856

32856

34008

34008

35160

35160

36696

36696

37888

37888

26

37888

37888

39232

40576

40576

40576

42368

42368

43816

43816

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

2472

2536

2536

2

2728

2792

2856

2856

2856

2984

2984

3112

3112

3112

3

3624

3624

3624

3752

3752

3880

3880

4008

4008

4136

4

4392

4392

4584

4584

4584

4776

4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

5992

5992

5992

6200

6

6456

6456

6456

6712

6712

6968

6968

6968

7224

7224

7

7480

7480

7736

7736

7992

7992

8248

8248

8504

8504

8

8504

8760

8760

9144

9144

9144

9528

9528

9528

9912

9

9528

9912

9912

10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

11448

11448

11832

11832

12216

12216

11

12216

12576

12576

12960

12960

13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

16992

16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

16

19848

19848

20616

20616

21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

25456

18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

27376

28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

30576

31704

31704

31704

32856

21

30576

31704

31704

31704

32856

32856

34008

34008

35160

35160

22

32856

34008

34008

34008

35160

35160

36696

36696

36696

37888

23

35160

35160

36696

36696

37888

37888

37888

39232

39232

40576

24

36696

37888

37888

39232

39232

40576

40576

42368

42368

42368

25

39232

39232

40576

40576

40576

42368

42368

43816

43816

43816

26

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

16992

17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

37888

39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

51024

26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

12576

9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

16992

16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

24496

24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

26416

27376

27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

34008

35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

37888

39232

39232

39232

40576

40576

40576

42368

42368

21

40576

40576

42368

42368

42368

43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

51024

51024

51024

24

48936

51024

51024

51024

52752

52752

52752

52752

55056

55056

25

51024

52752

52752

52752

55056

55056

55056

55056

57336

57336

26

59256

59256

61664

61664

61664

63776

63776

63776

66592

66592

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

25456

25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

28336

29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

51024

51024

51024

52752

52752

52752

55056

23

52752

52752

52752

55056

55056

55056

55056

57336

57336

57336

24

55056

57336

57336

57336

57336

59256

59256

59256

61664

61664

25

57336

59256

59256

59256

61664

61664

61664

61664

63776

63776

26

66592

68808

68808

68808

71112

71112

71112

73712

73712

75376

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

34008

35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

51024

51024

21

51024

51024

51024

52752

52752

52752

52752

55056

55056

55056

22

55056

55056

55056

57336

57336

57336

57336

59256

59256

59256

23

57336

59256

59256

59256

59256

61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

63776

66592

66592

66592

66592

25

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

26

75376

75376

75376

75376

75376

75376

75376

75376

75376

75376

[TS 36.211 clause 5.3.3]

The block of complex-valued symbols is divided into sets, each corresponding to one SC-FDMA symbol. Transform precoding shall be applied according to

resulting in a block of complex-valued symbols . The variable, where represents the bandwidth of the PUSCH in terms of resource blocks, and shall fulfil

where is a set of non-negative integers.

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.2.1.3 Test description

7.1.7.2.1.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31](to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.2.1.3.2 Test procedure sequence

Table 7.1.7.2.1.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Category 0

1000

Category 1bis

5160

Category 1

5160

Category 2

25456

Category 3

51024

Category 4

51024

Category 5

75376

Category 6

51024

Category 7

51024

Category 8

149776

Category 9

51024

Category 10

51024

Category 11

51024

Category 12

51024

Category 13

75376

Table 7.1.7.2.1.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs, NSDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096

note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16))

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24))

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32))

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40))

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48))

TBsize> 72240

7

8*FLOOR((TBsize – 264)/56))

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

N PDCP SDUs are transmitted in N AMD PDUs concatenated into a MAC PDU. The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – N*AMD PDU header size – MAC header – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is 16 bits;
MAC header si40 bits as MAC header size can be:

1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU) + R/R/E/LCID MAC subheader (8 bits for MAC SDU for AMD PDU) = 8 + 16 + 8 bits= 32 bits
or

2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits

Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bit size =

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) –64)/(8*N)) bits.

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.2.1.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

5 MHz

25

10 MHz

50

15 MHz

75

20 MHz

100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.2.1.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 7 are repeated for values of from 1 to Max and from 0 to 28, where satisfies values equal to and where is a set of non-negative integers.

2

SS looks up in table 8.6.1-1 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 3 to 7 are performed if TBsize is less than or equal to UE capability “Maximum number of UL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.2.1.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.2.1.3.2-2.

3

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.2.1.3.2-2.

4

After 300ms, the SS transmits all PDCP SDUs (NSDUs) as created in step 3 in a MAC PDU.

<–

MAC PDU (NSDUs x PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 0 with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-1 in TS 36.213.

(Note 1)

<–

(UL Grant)

DCI: (DCI Format 0, RVI (),,)

6

Void

7

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (NSDUs x PDCP SDU)

1

P

Note 1: The SS use the UE declared ICS pc_UL_64QM to set the modulation order depending on if UE supports uplink 64QAM or not as specified in sub-clause 8.6.1 in TS 36.213.

7.1.7.2.1.3.3 Specific Message Contents

Table 7.1.2.1.3.3-0: SystemInformationBlockType2 (Preamble and all steps, table 7.1.2.1.3.2-1)

Derivation Path: 36.508 clause 4.4.3.3, Table Nr. 4.4.3.3-1

Information Element

Value/Remark

Comment

Condition

SystemInformationBlockType2 ::= SEQUENCE {

radioResourceConfigCommon SEQUENCE {

pusch-ConfigCommon SEQUENCE {

pusch-ConfigBasic SEQUENCE {

enable64QAM

TRUE

}

}

pusch-ConfigCommon-v1270 SEQUENCE {

pusch-ConfigBasic SEQUENCE {

enable64QAM-v1270

TRUE

}

}

}

}

}

Table 7.1.7.2.1.3.3-1: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

rf-Parameters-v1250 SEQUENCE {

supportedBandListEUTRA-v1250 (SIZE (1..maxBands)) OF SEQUENCE {

Only first entry checked

ul-64QAM-r12

If included then checked against UE Category indications in the PICS

}

}

ue-CategoryUL-r12

If included then checked against UE Category indications in the PICS

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

7.1.7.2.2 UL-SCH transport block size selection / DCI format 6-0A

7.1.7.2.2.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has pending data for transmission and receives a Resource Block Assignment correspondent to physical resource blocks and a modulation and coding scheme for PUSCH scheduling }

then { UE transmits MAC PDU on PUSCH on the granted resources using DCI format 6-0A and a transport block size correspondent to the read and }

}

7.1.7.2.2.2 Conformance requirements

References:

The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.10; TS 36.213, clauses 8.1, 8.1.1, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.1; TS 36.211, clauses 5.2.4 and 5.3.3; and TS 36.306 clause 4.1A.

[TS 36.212 clause 5.3.3.1.10]

DCI format 6-0A is used for the scheduling of PUSCH in one UL cell.

The following information is transmitted by means of the DCI format 6-0A:

– Flag format 6-0A/format 6-1A differentiation – 1 bit, where value 0 indicates format 6-0A and value 1 indicates format 6-1A

– Frequency hopping flag – 1 bit, where value 0 indicates frequency hopping is not enabled and value 1 indicates frequency hopping is enabled as defined in section 5.3.4 of [2]

– Resource block assignment – +5 bits for PUSCH as defined in [3]:

MSB bits provide the narrowband index as defined in section 5.2.4 of [2]

– 5 bits provide the resource allocation using UL resource allocation type 0 within the indicated narrowband

– Modulation and coding scheme – 4 bits as defined in section 8.6 of [3]

– Repetition number – 2 bits as defined in section 8.0 of [3]

– HARQ process number – 3 bits

– New data indicator – 1 bit

– Redundancy version – 2 bits

– TPC command for scheduled PUSCH – 2 bits as defined in section 5.1.1.1 of [3]

– UL index – 2 bits as defined in sections 5.1.1.1, 7.2.1, 8 and 8.4 of [3] (this field is present only for TDD operation with uplink-downlink configuration 0)

– Downlink Assignment Index (DAI) – 2 bits as defined in section 7.3 of [3] (This field is present only for cases with TDD primary cell and either TDD operation with uplink-downlink configurations 1-6 or FDD operation. This field is reserved when the configured maximum repetition number is larger than 1 for either PDSCH or MPDCCH.)

– CSI request – 1 bit as defined in section 7.2.1 of [3]

– SRS request –1 bit. The interpretation of this field is provided in section 8.2 of [3]

– DCI subframe repetition number – 2 bits as defined in section 9.1.5 of [3]

If the number of information bits in format 6-0A mapped onto a given search space is less than the payload size of format 6-1A for scheduling the same serving cell and mapped onto the same search space (including any padding bits appended to format 6-1A), zeros shall be appended to format 6-0A until the payload size equals that of format 6-1A.

[TS 36.213 clause 8.1]

Resource allocation scheme Type 0 or Type 2 are supported for MPDCCH with uplink DCI format.

[TS 36.213 clause 8.1.1]

The resource allocation information for uplink resource allocation type 0 indicates to a scheduled UE a set of contiguously allocated virtual resource block indices denoted by . A resource allocation field in the scheduling grant consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of contiguously allocated resource blocks (≥ 1). For a BL/CE UE, uplink resource allocation type 0 is only applicable for UE configured with CEModeA and in this subclause. The resource indication value is defined by:

if then

else

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme and redundancy version” field () in the DCI, and

– check the “CQI request” bit in DCI, and

– compute the total number of allocated PRBs () based on the procedure defined in Section 8.1, and

– compute the number of coded symbols for control information.

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– read the "modulation and coding scheme and redundancy version" field () if the UE is a non-BL/CE UEs and read the “modulation and coding scheme” field () if the UE is a BL/CE UE, and

– check the "CSI request" bit field, and

– compute the total number of allocated PRBs () based on the procedure defined in subclause 8.1, and

– compute the number of coded symbols for control information.

[TS 36.213 clause 8.6.1]

For a BL/CE UE, the modulation order is determined according to table 8.6.1-2. A BL/CE UE configured with CEModeB is not expected to receive a DCI format 6-0B indicating .

For BL/CE UEs, the same redundancy version is applied to PUSCH transmitted in a given block of consecutive subframes. The subframe number of the first subframe in each block of consecutive subframes, denoted as , satisfies . Denote as the subframe number of the first uplink subframe intended for PUSCH. The PUSCH transmission spans consecutive subframes including non-BL/CE subframes where the PUSCH transmission is postponed. For the block of consecutive subframes, the redundancy version (rvidx) for PUSCH is determined according to Table 7.1.7.1-2 using , where and. The blocks of subframes are sequential in time, starting with to which subframe belongs. For a BL/CE UE configured in CEModeA, and is determined by the ‘Redundancy version’ field in DCI format 6-0A. For a BL/CE UE configured with CEModeB, for FDD and for TDD, and .

Table 8.6.1-2: Modulation and TBS index table for PUSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

2

10

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

[TS 36.213 clause 8.6.2]

For a BL/CE UE configured with CEModeA, the UE shall first determine the TBS index () usingand Table 8.6.1-2. For a BL/CE UE the TBS is determined by the procedure in subclause 7.1.7.2.1.

For a BL/CE UE configured with CEModeB, the TBS is determined according to the procedure in subclause 7.1.7.2.1 for , and =6 when resource allocation field is ‘110’ or ‘111’ otherwise= 3.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

[TS 36.211 clause 5.2.4]

A narrowband is defined as six non-overlapping consecutive physical resource blocks in the frequency domain. The total number of uplink narrowbands in the uplink transmission bandwidth configured in the cell is given by

The narrowbands are numbered in order of increasing physical resource-block number where narrowband is composed of physical resource-block indices

where

[TS 36.211 clause 5.3.3]

For each layer the block of complex-valued symbols is divided into sets, each corresponding to one SC-FDMA symbol. Transform precoding shall be applied according to

resulting in a block of complex-valued symbols . The variable, where represents the bandwidth of the PUSCH in terms of resource blocks, and shall fulfil

where is a set of non-negative integers.

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 14

9585664

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

DL Category 18

UL Category 3

11 800 000

21 600 000

DL Category 18

UL Category 5

12 000 000

21 800 000

DL Category 18

UL Category 7

12 300 000

22 100 000

DL Category 18

UL Category 13

12 700 000

22 500 000

DL Category 19

UL Category 3

16 000 000

28 300 000

DL Category 19

UL Category 5

16 300 000

28 500 000

DL Category 19

UL Category 7

16 500 000

28 800 000

DL Category 19

UL Category 13

17 000 000

29 200 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.2.2.3 Test description

7.1.7.2.2.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeA according to [18].

7.1.7.2.2.3.2 Test procedure sequence

Table 7.1.7.2.2.3.2-1: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 6 are repeated for values of from 1 to 6 and from 0 to 15, where satisfies values equal to and where is a set of non-negative integers.

2

SS looks up in table 8.6.1-2 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

IF pc_ce_PUSCH_NB_MaxTBS THEN: Steps 3 to 6 are performed if TBsize is less than or equal to 2984 bits and larger than or equal to 104 bits

ELSE: Steps 3 to 6 are performed if TBsize is less than or equal to 1000 bits and larger than or equal to 104 bits.

3

SS creates one PDCP SDUs, of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

4

After 300ms, the SS transmits the PDCP SDU as created in step 3 in a MAC PDU.

<–

MAC PDU (PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 6-0A with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-2 in TS 36.213.

<–

(UL Grant)

DCI: (DCI Format 6-0A, RVI (),,)

6

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 2984 bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.2.2.3.3 Specific Message Contents

None.

7.1.7.2.2a UL-SCH transport block size selection / DCI format 6-0A / CAT M2

7.1.7.2.2a.1 Test Purpose (TP)

Same as clause 7.1.7.2.2.1.

7.1.7.2.2a.2 Conformance requirements

References:

The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.10; TS 36.213, clauses 8.1, 8.1.1, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.1; TS 36.211, clauses 5.2.4 and 5.3.3; and TS 36.306 clause 4.1A.

Same as clause 7.1.7.2.2.2 with exception for:

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

DL Category 18

1174752-1206016 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

14616576

2 or 4 [or 8]

DL Category 19

1566336 -1658272 (Note 3)

[299856 (8 layers, 64QAM)

391656 (8 layers, 256QAM)]

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

19488768

2 or 4 [or 8]

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 14

9585664

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

DL Category 18

UL Category 3

11 800 000

21 600 000

DL Category 18

UL Category 5

12 000 000

21 800 000

DL Category 18

UL Category 7

12 300 000

22 100 000

DL Category 18

UL Category 13

12 700 000

22 500 000

DL Category 19

UL Category 3

16 000 000

28 300 000

DL Category 19

UL Category 5

16 300 000

28 500 000

DL Category 19

UL Category 7

16 500 000

28 800 000

DL Category 19

UL Category 13

17 000 000

29 200 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.2.2a.3 Test description

7.1.7.2.2a.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeA according to [18].

7.1.7.2.2a.3.2 Test procedure sequence

Table 7.1.7.2.2a.3.2-1: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 6 are repeated for values of from 1 to 6 and from 0 to 15, where satisfies values equal to and where is a set of non-negative integers.

2

SS looks up in table 8.6.1-2 in TS 36.213 based on the value of . SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

Steps 3 to 6 are performed if TBsize is less than or equal to 6968 bits and larger than or equal to 104 bits

3

SS creates one PDCP SDUs, of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

4

After 300ms, the SS transmits the PDCP SDU as created in step 3 in a MAC PDU.

<–

MAC PDU (PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 6-0A with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-2 in TS 36.213.

<–

(UL Grant)

DCI: (DCI Format 6-0A, RVI (),,)

6

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 6968bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

7.1.7.2.2a.3.3 Specific Message Contents

None.

7.1.7.2.3 UL-SCH transport block size selection / DCI format 6-0B/ Uplink resource allocation type 2

7.1.7.2.3.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state }

ensure that {

when { UE has pending data for transmission and receives a Resource Block Assignment correspondent to physical resource blocks and a modulation and coding scheme for PUSCH scheduling }

then { UE transmits MAC PDU on PUSCH on the granted resources using DCI format 6-0B and a transport block size correspondent to the read and }

}

7.1.7.2.3.2 Conformance requirements

References:

The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.11; TS 36.213, clauses 8.1, 8.1.1, 8.1.3, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.1; TS 36.211, clauses 5.2.4 and 5.3.3; and TS 36.306 clause 4.1A.

[TS 36.212 clause 5.3.3.1.11]

DCI format 6-0B is used for the scheduling of PUSCH in one UL cell.

The following information is transmitted by means of the DCI format 6-0B:

– Flag for format 6-0B/format 6-1B differentiation – 1 bit, where value 0 indicates format 6-0B and value 1 indicates format 6-1B

– Resource block assignment – +3 bits for PUSCH as defined in [3]:

MSB bits provide the narrowband index as defined in section 5.2.4 of [2]

– 3 bits provide the resource allocation within the indicated narrowband as specified in section 8.1.3 of [3]

– Modulation and coding scheme – 4 bits as defined in section 8.6 of [3]

– Repetition number – 3 bits as defined in section 8.0 of [3]

– HARQ process number – 1 bit

– New data indicator – 1 bit

– DCI subframe repetition number – 2 bits as defined in section 9.1.5 of [3]

If the number of information bits in format 6-0B mapped onto a given search space is less than the payload size of format 6-1B for scheduling the same serving cell and mapped onto the same search space (including any padding bits appended to format 6-1B), zeros shall be appended to format 6-0B until the payload size equals that of format 6-1B.

[TS 36.213 clause 8.1]

Resource allocation scheme Type 0 or Type 2 are supported for MPDCCH with uplink DCI format.

[TS 36.213 clause 8.1.1]

The resource allocation information for uplink resource allocation type 0 indicates to a scheduled UE a set of contiguously allocated virtual resource block indices denoted by . A resource allocation field in the scheduling grant consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of contiguously allocated resource blocks (≥ 1). For a BL/CE UE, uplink resource allocation type 0 is only applicable for UE configured with CEModeA and in this subclause. The resource indication value is defined by:

if then

else

[TS 36.213 clause 8.1.3]

Uplink resource allocation type 2 is only applicable for BL/CE UE configured with CEModeB. The resource allocation information for uplink resource allocation type 2 indicates to a scheduled UE a set of contiguously allocated resource blocks within a narrowband as given in Table 8.1.3-1

Table 8.1.3-1: Resource block(s) allocation for BL/CE UE configured with CEModeB.

Value of resource allocation field

Allocated resource blocks

‘000’

0

‘001’

1

‘010’

2

‘011’

3

‘100’

4

‘101’

5

‘110’

0 and 1

‘111’

2 and 3

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– read the 5-bit “modulation and coding scheme and redundancy version” field () in the DCI, and

– check the “CQI request” bit in DCI, and

– compute the total number of allocated PRBs () based on the procedure defined in Section 8.1, and

– compute the number of coded symbols for control information.

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– read the "modulation and coding scheme and redundancy version" field () if the UE is a non-BL/CE UEs and read the “modulation and coding scheme” field () if the UE is a BL/CE UE, and

– check the "CSI request" bit field, and

– compute the total number of allocated PRBs () based on the procedure defined in subclause 8.1, and

– compute the number of coded symbols for control information.

[TS 36.213 clause 8.6.1]

For a BL/CE UE, the modulation order is determined according to table 8.6.1-2. A BL/CE UE configured with CEModeB is not expected to receive a DCI format 6-0B indicating .

For BL/CE UEs, the same redundancy version is applied to PUSCH transmitted in a given block of consecutive subframes. The subframe number of the first subframe in each block of consecutive subframes, denoted as , satisfies . Denote as the subframe number of the first uplink subframe intended for PUSCH. The PUSCH transmission spans consecutive subframes including non-BL/CE subframes where the PUSCH transmission is postponed. For the block of consecutive subframes, the redundancy version (rvidx) for PUSCH is determined according to Table 7.1.7.1-2 using , where and. The blocks of subframes are sequential in time, starting with to which subframe belongs. For a BL/CE UE configured in CEModeA, and is determined by the ‘Redundancy version’ field in DCI format 6-0A. For a BL/CE UE configured with CEModeB, for FDD and for TDD, and .

Table 8.6.1-2: Modulation and TBS index table for PUSCH

MCS Index

Modulation Order

TBS Index

0

2

0

1

2

1

2

2

2

3

2

3

4

2

4

5

2

5

6

2

6

7

2

7

8

2

8

9

2

9

10

2

10

11

4

10

12

4

11

13

4

12

14

4

13

15

4

14

[TS 36.213 clause 8.6.2]

For a BL/CE UE configured with CEModeA, the UE shall first determine the TBS index () usingand Table 8.6.1-2. For a BL/CE UE the TBS is determined by the procedure in subclause 7.1.7.2.1.

For a BL/CE UE configured with CEModeB, the TBS is determined according to the procedure in subclause 7.1.7.2.1 for , and =6 when resource allocation field is ‘110’ or ‘111’ otherwise= 3.

[TS 36.213 clause 7.1.7.2.1]

For, the TBS is given by the (,) entry of Table 7.1.7.2.1-1.

Table 7.1.7.2.1-1: Transport block size table (dimension 34×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

[TS 36.211 clause 5.2.4]

A narrowband is defined as six non-overlapping consecutive physical resource blocks in the frequency domain. The total number of uplink narrowbands in the uplink transmission bandwidth configured in the cell is given by

The narrowbands are numbered in order of increasing physical resource-block number where narrowband is composed of physical resource-block indices

where

[TS 36.211 clause 5.3.3]

For each layer the block of complex-valued symbols is divided into sets, each corresponding to one SC-FDMA symbol. Transform precoding shall be applied according to

resulting in a block of complex-valued symbols . The variable, where represents the bandwidth of the PUSCH in terms of resource blocks, and shall fulfil

where is a set of non-negative integers.

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1 (Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40 000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.2.3.3 Test description

7.1.7.2.3.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeB according to [18].

7.1.7.2.3.3.2 Test procedure sequence

Table 7.1.7.2.3.3.2-1: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 6 are repeated for values of resource allocation from 0 to 7 and from 0 to 10.

2

SS looks up in table 8.6.1-2 in TS 36.213 based on the value of . SS evaluates the resource allocation to RB allocated mapping as resource allocation to for Tbsize as per table 7.1.7.2.3.3.2-2. SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

IF pc_ce_PUSCH_NB_MaxTBS THEN: Steps 3 to 6 are performed if TBsize is less than or equal to 2984 bits and larger than or equal to 104 bits

ELSE: Steps 3 to 6 are performed if TBsize is less than or equal to 1000 bits and larger than or equal to 104 bits.

3

SS creates one PDCP SDUs, of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

4

After 300ms, the SS transmits the PDCP SDU as created in step 3 in a MAC PDU.

<–

MAC PDU (PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 6-0B with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-2 in TS 36.213.

<–

(UL Grant)

DCI: (DCI Format 6-0B, RVI (),,)

6

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 2984 bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.2.3.3.2-2: Resource Allocation to mapping

Value of resource allocation field

Allocated resource blocks

used in TBS

‘000’

0

3

‘001’

1

3

‘010’

2

3

‘011’

3

3

‘100’

4

3

‘101’

5

3

‘110’

0 and 1

6

‘111’

2 and 3

6

Note: The mapping of Resouce allocation to RB allocated is as per 36.213 table 8.1.3-1 and mapping of resource allocation to Nprb used in TBsize evaluation is as per 36.213 clause 8.6.2

7.1.7.2.3.3.3 Specific Message Contents

None.

7.1.7.2.3a UL-SCH transport block size selection / DCI format 6-0B/ Uplink resource allocation type 2 / CAT M2

7.1.7.2.3a.1 Test Purpose (TP)

Same as clause 7.1.7.2.3a.1.

7.1.7.2.3a.2 Conformance requirements

References:

The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.11; TS 36.213, clauses 8.1, 8.1.1, 8.1.3, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.1; TS 36.211, clauses 5.2.4 and 5.3.3; and TS 36.306 clause 4.1A.

Same as clause 7.1.7.2.3a.2 with exception for:

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-1: Downlink physical layer parameter values set by the field ue-CategoryDL

UE DL Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

DL Category M1

1000

1000

25344

1

DL Category M2

4008

4008

73152

1

DL Category 0 (Note 2)

1000

1000

25344

1

DL Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

DL Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

DL Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

DL Category 13

391632

195816 (4 layers, 256QAM)

97896 (2 layers, 256QAM)

3654144

2 or 4

DL Category 14

3916560

391656 (8 layers, 256QAM)

47431680

8

DL Category 15

749856-798800 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

9744384

2 or 4

DL Category 16

978960 -1051360 (Note 3)

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

12789504

2 or 4

DL Category 17

25065984

391656 (8 layers, 256QAM)

303562752

8

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

NOTE 2: Within one TTI, a UE indicating category 0 shall be able to receive up to 1000 bits for a transport block associated with C-RNTI/Semi-Persistent Scheduling C-RNTI/P-RNTI/SI-RNTI/RA-RNTI and up to 2216 bits for another transport block associated with P-RNTI/SI-RNTI/RA-RNTI.

NOTE 3: The UE indicating category x shall reach the value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of category x. The UE shall determine the required value within the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category, based on its capabilities (i.e. CA band combination, MIMO, Modulation scheme). If the UE capability of CA band combination, MIMO and modulation scheme supported can exceed the upper limit of the defined range, the UE shall support the maximum value of the defined range indicated by “Maximum number of DL-SCH transport block bits received within a TTI” of the corresponding category.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

UL Category M2

6968

6968

No

UL Category 0

1000

1000

No

UL Category 3

51024

51024

No

UL Category 5

75376

75376

Yes

UL Category 7

102048

51024

No

UL Category 8

1497760

149776

Yes

UL Category 13

150752

75376

Yes

UL Category 14

9585664

149776

Yes

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

Table 4.1A-3: Total layer 2 buffer sizes set by the fields ue-CategoryDL and ue-CategoryUL

UE DL Category

UE UL Category

Total layer 2 buffer size [bytes]

With support for split bearers

DL Category M1 (Note 1)

UL Category M1

20 000 or 40000

N/A

DL Category M2

UL Category M2

100 000

N/A

DL Category 0

UL Category 0

20 000

N/A

DL Category 6

UL Category 5

3 500 000

6 000 000

DL Category 7

UL Category 13

4 200 000

6 700 000

DL Category 9

UL Category 5

5 000 000

7 400 000

DL Category 10

UL Category 13

5 700 000

8 100 000

DL Category 11

UL Category 5

6 400 000

11 300 000

DL Category 12

UL Category 13

7 100 000

12 000 000

DL Category 13

UL Category 3

4 200 000

7 300 000

DL Category 13

UL Category 5

4 400 000

7 600 000

DL Category 13

UL Category 7

4 700 000

7 800 000

DL Category 13

UL Category 13

5 100 000

8 300 000

DL Category 14

UL Category 8

50 800 000

76 200 000

DL Category 15

UL Category 3

8 000 000

13 000 000

DL Category 15

UL Category 5

8 200 000

13 400 000

DL Category 15

UL Category 7

8 500 000

13 600 000

DL Category 15

UL Category 13

8 900 000

14 100 000

DL Category 16

UL Category 3

10 000 000

17 000 000

DL Category 16

UL Category 5

10 600 000

17 400 000

DL Category 16

UL Category 7

10 800 000

17 600 000

DL Category 16

UL Category 13

11 000 000

18 100 000

DL Category 17

UL Category 14

330 000 000

530 000 000

NOTE 1: The UE supports "Total layer 2 buffer size" of 40 000 bytes if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 20 000 bytes.

7.1.7.2.3a.3 Test description

7.1.7.2.3a.3.1 Pre-test conditions

System Simulator:

– Cell 1.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4-CE) using condition CEmodeB according to [18].

7.1.7.2.3a.3.2 Test procedure sequence

Table 7.1.7.2.3a.3.2-1: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 6 are repeated for values of resource allocation from 0 to 7 and from 0 to 10.

2

SS looks up in table 8.6.1-2 in TS 36.213 based on the value of . SS evaluates the resource allocation to RB allocated mapping as resource allocation to for Tbsize as per table 7.1.7.2.3a.3.2-2. SS looks up TBsize in table 7.1.7.2.1-1 in TS 36.213 based on values of and .

EXCEPTION:

Steps 3 to 6 are performed if TBsize is less than or equal to 6968 bits and larger than or equal to 104 bits.

3

SS creates one PDCP SDUs, of size 8*FLOOR((TBsize – 96)/8).

(Note 1, Note 2)

4

After 300ms, the SS transmits the PDCP SDU as created in step 3 in a MAC PDU.

<–

MAC PDU (PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 6-0B with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-2 in TS 36.213.

<–

(UL Grant)

DCI: (DCI Format 6-0B, RVI (),,)

6

CHECK: Does UE return a PDCP SDU with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (PDCP SDU)

1

P

Note 1: One PDCP SDU can be used as the maximum TB size of 6968bits fit into a PDCP SDU size less than the limit of 1500 octets (maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

PDCP SDU size = (TBsize – PDCP header size – AMD PDU header size – MAC header size – Size of Timing Advance – RLC Status PDU size) , where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;

AMD PDU header size is 16 bits (16 bits standard AM header and no Length indicator);

MAC header size = 40 bits as MAC header size can be
1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU)R/R/E/LCID MAC subheader (8 bits for MAC SDU) = for AMD PDU 8 + 8 16+bits = 32 bits
Or
2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits
Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bits

This gives:
PDCP SDU size = 8*FLOOR((TBsize – (16+16+40+8+16))/(8)) bits = 8*FLOOR(TBsize – 96)/(8)) bits

Note 2: According to TS 36.213 Table 7.1.7.2.1-1 and the PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.2.3a.3.2-2: Resource Allocation to mapping

Value of resource allocation field

Allocated resource blocks

used in TBS

‘000’

0

3

‘001’

1

3

‘010’

2

3

‘011’

3

3

‘100’

4

3

‘101’

5

3

‘110’

0 and 1

6

‘111’

2 and 3

6

Note: The mapping of Resouce allocation to RB allocated is as per 36.213 table 8.1.3-1 and mapping of resource allocation to Nprb used in TBsize evaluation is as per 36.213 clause 8.6.2

7.1.7.2.3a.3.3 Specific Message Contents

None.

7.1.7.2.4 UL-SCH transport block size selection / DCI format 0 / UL 256QAM

7.1.7.2.4.1 Test Purpose (TP)

(1)

with { UE in E-UTRA RRC_CONNECTED state and configured with parameter Enable256QAM }

ensure that {

when { UE has pending data for transmission and receives a Resource Block Assignment correspondent to physical resource blocks and a modulation and coding scheme for PUSCH scheduling }

then { UE transmits MAC PDU on PUSCH on the granted resources using a transport block size correspondent to the read and }

}

7.1.7.2.4.2 Conformance requirements

References: The conformance requirements covered in the current TC are specified in: TS 36.212, clause 5.3.3.1.1; TS 36.213, clauses 8.1, 8.6, 8.6.1, 8.6.2 and 7.1.7.2.4; TS 36.211, clause 5.3.3; and TS 36.306 clause 4.1 and 4.1A.

[TS 36.212 clause 5.3.3.1.1]

DCI format 0 is used for the scheduling of PUSCH in one UL cell.

The following information is transmitted by means of the DCI format 0:

– Carrier indicator – 0 or 3 bits. This field is present according to the definitions in [3].

– Flag for format0/format1A differentiation – 1 bit, where value 0 indicates format 0 and value 1 indicates format 1A

– Frequency hopping flag – 1 bit as defined in subclause 8.4 of [3]. This field is used as the MSB of the corresponding resource allocation field for resource allocation type 1.

– Resource block assignment and hopping resource allocation – bits

– For PUSCH hopping (resource allocation type 0 only):

NUL_hop MSB bits are used to obtain the value of as indicated in subclause 8.4 of [3]

bits provide the resource allocation of the first slot in the UL subframe

– For non-hopping PUSCH with resource allocation type 0:

bits provide the resource allocation in the UL subframe as defined in subclause 8.1.1 of [3]

– For non-hopping PUSCH with resource allocation type 1:

– The concatenation of the frequency hopping flag field and the resource block assignment and hopping resource allocation field provides the resource allocation field in the UL subframe as defined in subclause 8.1.2 of [3]

– Modulation and coding scheme and redundancy version – 5 bits as defined in subclause 8.6 of [3]

[TS 36.213 clause 8.1.1]

The resource allocation information for uplink resource allocation type 0 indicates to a scheduled UE a set of contiguously allocated virtual resource block indices denoted by . A resource allocation field in the scheduling grant consists of a resource indication value (RIV) corresponding to a starting resource block () and a length in terms of contiguously allocated resource blocks (≥ 1).

The resource indication value is defined by

if then

else

[TS 36.213 clause 8.6]

To determine the modulation order, redundancy version and transport block size for the physical uplink shared channel, the UE shall first

– for a cell that is not a LAA SCell, read the "modulation and coding scheme and redundancy version" field () if the UE is a non-BL/CE UEs and read the "modulation and coding scheme" field () if the UE is a BL/CE UE, and

  • for a cell that is a LAA SCell, read the "modulation and coding scheme " field () and "redundancy version" field (), and

– check the "CSI request" bit field, and

– compute the total number of allocated PRBs () based on the procedure defined in Subclause 8.1, and

– compute the number of coded symbols for control information.

[TS 36.213 clause 8.6.1]

For a non-BL/CE UE and for , the modulation order () is determined as follows, where = unless specified otherwise:

– If the UE is capable of supporting 256QAM in PUSCH, and has not been configured by higher layers to transmit only QPSK and 16QAM and has not been configured with higher layer parameter Enable256QAM, the modulation order is given by in Table 8.6.1-1.

– If the UE is capable of supporting 256QAM in PUSCH and configured with higher layer parameter Enable256QAM, the modulation order is given by in Table 8.6.1-3,

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet1-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B mapped onto the UE specific search space and with CRC scrambled by the C-RNTI, and the subframe of the PUSCH belongs to uplink power control subframe set 1, or,

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet2-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B mapped onto the UE specific search space and with CRC scrambled by the C-RNTI, and the subframe of the PUSCH belongs to uplink power control subframe set 2, or,

– if higher layer parameter tpc-SubframeSet is not configured, higher layer parameter dci-Format0=TRUE, and the associated DCI is of format 0/0A/0B mapped onto the UE specific search space and with CRC scrambled by the C-RNTI, or,

– otherwise, the modulation order is given by in Table 8.6.1-1.

For a non-BL/CE UE and for the modulation order () is determined as follows:

– if DCI format 0/0A/0B is used and N =1 (determined by the procedure in Subclause 8.0) or, if DCI format 4 is used and only 1 TB is enabled and for the enabled TB and the signalled number of transmission layers is 1 or if DCI format 4A/4B is used and for both TBs and N =1 (determined by the procedure in Subclause 8.0), and if

– the "CSI request" bit field is 1 bit and the bit is set to trigger an aperiodic report and, or,

then the modulation order is set to .

– Otherwise,

– For a cell that is not a LAA SCell, the modulation order shall be determined from the DCI transported in the latest PDCCH/EPDCCH with DCI format 0/4 for the same transport block using . If there is no PDCCH/EPDCCH with DCI format 0/4 for the same transport block using , the modulation order shall be determined from

– the most recent semi-persistent scheduling assignment PDCCH/EPDCCH, when the initial PUSCH for the same transport block is semi-persistently scheduled, or,

– the random access response grant for the same transport block, when the PUSCH is initiated by the random access response grant.

For a cell that is not a LAA SCell, and a non-BL/CE UE,

– if the UE is configured with higher layer parameter enable256QAM, and if the PDCCH corresponding to the PUSCH transmission is located in UE specific search space with CRC scrambled by the C-RNTI, the UE shall use Table 8.6.1-3 to determine the redundancy version (rvidx) to use in the physical uplink shared channel,

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet1-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B, and the subframe of the PUSCH belongs to uplink power control subframe set 1, or,

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet2-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B, and the subframe of the PUSCH belongs to uplink power control subframe set 2, or,

– if higher layer parameter tpc-SubframeSet is not configured, higher layer parameter dci-Format0=TRUE, and the associated DCI is of format 0/0A/0B, or,

– otherwise, the UE shall use Table 8.6.1-1 to determine the redundancy version (rvidx) to use in the physical uplink shared channel.

Table 8.6.1-1: Modulation, TBS index and redundancy version table for PUSCH

MCS Index

Modulation Order

TBS Index

Redundancy Version
rvidx

0

2

0

0

1

2

1

0

2

2

2

0

3

2

3

0

4

2

4

0

5

2

5

0

6

2

6

0

7

2

7

0

8

2

8

0

9

2

9

0

10

2

10

0

11

4

10

0

12

4

11

0

13

4

12

0

14

4

13

0

15

4

14

0

16

4

15

0

17

4

16

0

18

4

17

0

19

4

18

0

20

4

19

0

21

6

19

0

22

6

20

0

23

6

21

0

24

6

22

0

25

6

23

0

26

6

24

0

27

6

25

0

28

6

26

0

29

reserved

1

30

2

31

3

Table 8.6.1-3: Modulation, TBS index and redundancy version table for PUSCH

MCS Index

Modulation Order

TBS Index

Redundancy Version
rvidx

0

2

0

0

1

2

2

0

2

2

4

0

3

2

6

0

4

2

8

0

5

2

10

0

6

4

11

0

7

4

12

0

8

4

13

0

9

4

14

0

10

4

16

0

11

4

17

0

12

4

18

0

13

4

19

0

14

6

20

0

15

6

21

0

16

6

22

0

17

6

23

0

18

6

24

0

19

6

25

0

20

6

27

0

21

6

28

0

22

6

29

0

23

8

30

0

24

8

31

0

25

8

32

0

26

8

32A

0

27

8

33

0

28

8

34

0

29

reserved

1

30

2

31

3

[TS 36.213 clause 8.6.2]

For a non-BL/CE UE and for , the UE shall first determine the TBS index () using except if the transport block is disabled in DCI format 4/4A/4B as specified below. For a transport block that is not mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Subclause 7.1.7.2.4. For a transport block that is mapped to two-layer spatial multiplexing, the TBS is determined by the procedure in Subclause 7.1.7.2.2.

The UE shall determine the TBS index () using and Table 8.6.1-3, if the UE is configured with higher layer parameter enable256QAM, and if the PDCCH corresponding to the PUSCH transmission is located in UE specific search space with CRC scrambled by the C-RNTI, and

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet1-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B, and the subframe of the PUSCH belongs to uplink power control subframe set 1, or,

– if higher layer parameter tpc-SubframeSet is configured, higher layer parameter subframeSet2-DCI-Format0=TRUE, the associated DCI is of format 0/0A/0B, and the subframe of the PUSCH belongs to uplink power control subframe set 2, or,

– if higher layer parameter tpc-SubframeSet is not configured, higher layer parameter dci-Format0=TRUE, and the associated DCI is of format 0/0A/0B, or,

otherwise, the UE shall determine the TBS index () using and Table 8.6.1-1.

If the UE is configured with higher layer parameter symPUSCH-UpPts-r14, ttiBundling=FALSE, and the transport block is transmitted in UpPTS of the special subframe in frame structure type 2, then

– for special subframe configuration with up to 3 UpPTS SC-FDMA data symbols:

– set the Table 7.1.7.2.4-1 column indicator to instead of

– otherwise:

– set the Table 7.1.7.2.4-1 column indicator to instead of .

For a non-BL/CE UE and for ,

– if DCI format 0/0A/0B is used and N =1 (determined by the procedure in Subclause 8.0) or, if DCI format 4 is used and only 1 TB is enabled and for the enabled TB and the number of transmission layers is 1 or if DCI format 4A/4B is used and for both TBs and N =1 (determined by the procedure in Subclause 8.0), and if

– the "CSI request" bit field is 1 bit and is set to trigger an aperiodic CSI report and or,

then there is no transport block for the UL-SCH and only the control information feedback for the current PUSCH reporting mode is transmitted by the UE.

– Otherwise, the transport block size shall be determined from the initial PDCCH/EPDCCH for the same transport block using . If there is no initial PDCCH/EPDCCH with an uplink DCI format for the same transport block using , the transport block size shall be determined from

– the most recent semi-persistent scheduling assignment PDCCH/EPDCCH, when the initial PUSCH for the same transport block is semi-persistently scheduled, or,

– the random access response grant for the same transport block, when the PUSCH is initiated by the random access response grant.

[TS 36.213 clause 7.1.7.2.4]

For, the TBS is given by the (,) entry of Table 7.1.7.2.4-1.

Table 7.1.7.2.4-1: Transport block size table (dimension 39×110)

1

2

3

4

5

6

7

8

9

10

0

16

32

56

88

120

152

176

208

224

256

1

24

56

88

144

176

208

224

256

328

344

2

32

72

144

176

208

256

296

328

376

424

3

40

104

176

208

256

328

392

440

504

568

4

56

120

208

256

328

408

488

552

632

696

5

72

144

224

328

424

504

600

680

776

872

6

328

176

256

392

504

600

712

808

936

1032

7

104

224

328

472

584

712

840

968

1096

1224

8

120

256

392

536

680

808

968

1096

1256

1384

9

136

296

456

616

776

936

1096

1256

1416

1544

10

144

328

504

680

872

1032

1224

1384

1544

1736

11

176

376

584

776

1000

1192

1384

1608

1800

2024

12

208

440

680

904

1128

1352

1608

1800

2024

2280

13

224

488

744

1000

1256

1544

1800

2024

2280

2536

14

256

552

840

1128

1416

1736

1992

2280

2600

2856

15

280

600

904

1224

1544

1800

2152

2472

2728

3112

16

328

632

968

1288

1608

1928

2280

2600

2984

3240

17

336

696

1064

1416

1800

2152

2536

2856

3240

3624

18

376

776

1160

1544

1992

2344

2792

3112

3624

4008

19

408

840

1288

1736

2152

2600

2984

3496

3880

4264

20

440

904

1384

1864

2344

2792

3240

3752

4136

4584

21

488

1000

1480

1992

2472

2984

3496

4008

4584

4968

22

520

1064

1608

2152

2664

3240

3752

4264

4776

5352

23

552

1128

1736

2280

2856

3496

4008

4584

5160

5736

24

584

1192

1800

2408

2984

3624

4264

4968

5544

5992

25

616

1256

1864

2536

3112

3752

4392

5160

5736

6200

26

712

1480

2216

2984

3752

4392

5160

5992

6712

7480

26A

632

1288

1928

2600

3240

3880

4584

5160

5992

6456

11

12

13

14

15

16

17

18

19

20

0

288

328

344

376

392

424

456

488

504

536

1

376

424

456

488

520

568

600

632

680

712

2

472

520

568

616

648

696

744

776

840

872

3

616

680

744

808

872

904

968

1032

1096

1160

4

776

840

904

1000

1064

1128

1192

1288

1352

1416

5

968

1032

1128

1224

1320

1384

1480

1544

1672

1736

6

1128

1224

1352

1480

1544

1672

1736

1864

1992

2088

7

1320

1480

1608

1672

1800

1928

2088

2216

2344

2472

8

1544

1672

1800

1928

2088

2216

2344

2536

2664

2792

9

1736

1864

2024

2216

2344

2536

2664

2856

2984

3112

10

1928

2088

2280

2472

2664

2792

2984

3112

3368

3496

11

2216

2408

2600

2792

2984

3240

3496

3624

3880

4008

12

2472

2728

2984

3240

3368

3624

3880

4136

4392

4584

13

2856

3112

3368

3624

3880

4136

4392

4584

4968

5160

14

3112

3496

3752

4008

4264

4584

4968

5160

5544

5736

15

3368

3624

4008

4264

4584

4968

5160

5544

5736

6200

16

3624

3880

4264

4584

4968

5160

5544

5992

6200

6456

17

4008

4392

4776

5160

5352

5736

6200

6456

6712

7224

18

4392

4776

5160

5544

5992

6200

6712

7224

7480

7992

19

4776

5160

5544

5992

6456

6968

7224

7736

8248

8504

20

5160

5544

5992

6456

6968

7480

7992

8248

8760

9144

21

5544

5992

6456

6968

7480

7992

8504

9144

9528

9912

22

5992

6456

6968

7480

7992

8504

9144

9528

10296

10680

23

6200

6968

7480

7992

8504

9144

9912

10296

11064

11448

24

6712

7224

7992

8504

9144

9912

10296

11064

11448

12216

25

6968

7480

8248

8760

9528

10296

10680

11448

12216

12576

26

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

26A

7224

7736

8504

9144

9912

10296

11064

11832

12576

12960

21

22

23

24

25

26

27

28

29

30

0

568

600

616

648

680

712

744

776

776

808

1

744

776

808

872

904

936

968

1000

1032

1064

2

936

968

1000

1064

1096

1160

1192

1256

1288

1320

3

1224

1256

1320

1384

1416

1480

1544

1608

1672

1736

4

1480

1544

1608

1736

1800

1864

1928

1992

2088

2152

5

1864

1928

2024

2088

2216

2280

2344

2472

2536

2664

6

2216

2280

2408

2472

2600

2728

2792

2984

2984

3112

7

2536

2664

2792

2984

3112

3240

3368

3368

3496

3624

8

2984

3112

3240

3368

3496

3624

3752

3880

4008

4264

9

3368

3496

3624

3752

4008

4136

4264

4392

4584

4776

10

3752

3880

4008

4264

4392

4584

4776

4968

5160

5352

11

4264

4392

4584

4776

4968

5352

5544

5736

5992

5992

12

4776

4968

5352

5544

5736

5992

6200

6456

6712

6712

13

5352

5736

5992

6200

6456

6712

6968

7224

7480

7736

14

5992

6200

6456

6968

7224

7480

7736

7992

8248

8504

15

6456

6712

6968

7224

7736

7992

8248

8504

8760

9144

16

6712

7224

7480

7736

7992

8504

8760

9144

9528

9912

17

7480

7992

8248

8760

9144

9528

9912

10296

10296

10680

18

8248

8760

9144

9528

9912

10296

10680

11064

11448

11832

19

9144

9528

9912

10296

10680

11064

11448

12216

12576

12960

20

9912

10296

10680

11064

11448

12216

12576

12960

13536

14112

21

10680

11064

11448

12216

12576

12960

13536

14112

14688

15264

22

11448

11832

12576

12960

13536

14112

14688

15264

15840

16416

23

12216

12576

12960

13536

14112

14688

15264

15840

16416

16992

24

12960

13536

14112

14688

15264

15840

16416

16992

17568

18336

25

13536

14112

14688

15264

15840

16416

16992

17568

18336

19080

26

15264

16416

16992

17568

18336

19080

19848

20616

21384

22152

26A

13536

14112

15264

15840

16416

16992

17568

18336

19080

19848

31

32

33

34

35

36

37

38

39

40

0

840

872

904

936

968

1000

1032

1032

1064

1096

1

1128

1160

1192

1224

1256

1288

1352

1384

1416

1416

2

1384

1416

1480

1544

1544

1608

1672

1672

1736

1800

3

1800

1864

1928

1992

2024

2088

2152

2216

2280

2344

4

2216

2280

2344

2408

2472

2600

2664

2728

2792

2856

5

2728

2792

2856

2984

3112

3112

3240

3368

3496

3496

6

3240

3368

3496

3496

3624

3752

3880

4008

4136

4136

7

3752

3880

4008

4136

4264

4392

4584

4584

4776

4968

8

4392

4584

4584

4776

4968

4968

5160

5352

5544

5544

9

4968

5160

5160

5352

5544

5736

5736

5992

6200

6200

10

5544

5736

5736

5992

6200

6200

6456

6712

6712

6968

11

6200

6456

6712

6968

6968

7224

7480

7736

7736

7992

12

6968

7224

7480

7736

7992

8248

8504

8760

8760

9144

13

7992

8248

8504

8760

9144

9144

9528

9912

9912

10296

14

8760

9144

9528

9912

9912

10296

10680

11064

11064

11448

15

9528

9912

10296

10296

10680

11064

11448

11832

11832

12216

16

9912

10296

10680

11064

11448

11832

12216

12216

12576

12960

17

11064

11448

11832

12216

12576

12960

13536

13536

14112

14688

18

12216

12576

12960

13536

14112

14112

14688

15264

15264

15840

19

13536

13536

14112

14688

15264

15264

15840

16416

16992

16992

20

14688

14688

15264

15840

16416

16992

16992

17568

18336

18336

21

15840

15840

16416

16992

17568

18336

18336

19080

19848

19848

22

16992

16992

17568

18336

19080

19080

19848

20616

21384

21384

23

17568

18336

19080

19848

19848

20616

21384

22152

22152

22920

24

19080

19848

19848

20616

21384

22152

22920

22920

23688

24496

25

19848

20616

20616

21384

22152

22920

23688

24496

24496

25456

26

22920

23688

24496

25456

25456

26416

27376

28336

29296

29296

26A

20616

20616

21384

22152

22920

23688

24496

24496

25456

26416

41

42

43

44

45

46

47

48

49

50

0

1128

1160

1192

1224

1256

1256

1288

1320

1352

1384

1

1480

1544

1544

1608

1608

1672

1736

1736

1800

1800

2

1800

1864

1928

1992

2024

2088

2088

2152

2216

2216

3

2408

2472

2536

2536

2600

2664

2728

2792

2856

2856

4

2984

2984

3112

3112

3240

3240

3368

3496

3496

3624

5

3624

3752

3752

3880

4008

4008

4136

4264

4392

4392

6

4264

4392

4584

4584

4776

4776

4968

4968

5160

5160

7

4968

5160

5352

5352

5544

5736

5736

5992

5992

6200

8

5736

5992

5992

6200

6200

6456

6456

6712

6968

6968

9

6456

6712

6712

6968

6968

7224

7480

7480

7736

7992

10

7224

7480

7480

7736

7992

7992

8248

8504

8504

8760

11

8248

8504

8760

8760

9144

9144

9528

9528

9912

9912

12

9528

9528

9912

9912

10296

10680

10680

11064

11064

11448

13

10680

10680

11064

11448

11448

11832

12216

12216

12576

12960

14

11832

12216

12216

12576

12960

12960

13536

13536

14112

14112

15

12576

12960

12960

13536

13536

14112

14688

14688

15264

15264

16

13536

13536

14112

14112

14688

14688

15264

15840

15840

16416

17

14688

15264

15264

15840

16416

16416

16992

17568

17568

18336

18

16416

16416

16992

17568

17568

18336

18336

19080

19080

19848

19

17568

18336

18336

19080

19080

19848

20616

20616

21384

21384

20

19080

19848

19848

20616

20616

21384

22152

22152

22920

22920

21

20616

21384

21384

22152

22920

22920

23688

24496

24496

25456

22

22152

22920

22920

23688

24496

24496

25456

25456

26416

27376

23

23688

24496

24496

25456

25456

26416

27376

27376

28336

28336

24

25456

25456

26416

26416

27376

28336

28336

29296

29296

30576

25

26416

26416

27376

28336

28336

29296

29296

30576

31704

31704

26

30576

30576

31704

32856

32856

34008

35160

35160

36696

36696

26A

26416

27376

27376

29296

29296

29296

30576

30576

31704

32856

51

52

53

54

55

56

57

58

59

60

0

1416

1416

1480

1480

1544

1544

1608

1608

1608

1672

1

1864

1864

1928

1992

1992

2024

2088

2088

2152

2152

2

2280

2344

2344

2408

2472

2536

2536

2600

2664

2664

3

2984

2984

3112

3112

3240

3240

3368

3368

3496

3496

4

3624

3752

3752

3880

4008

4008

4136

4136

4264

4264

5

4584

4584

4776

4776

4776

4968

4968

5160

5160

5352

6

5352

5352

5544

5736

5736

5992

5992

5992

6200

6200

7

6200

6456

6456

6712

6712

6712

6968

6968

7224

7224

8

7224

7224

7480

7480

7736

7736

7992

7992

8248

8504

9

7992

8248

8248

8504

8760

8760

9144

9144

9144

9528

10

9144

9144

9144

9528

9528

9912

9912

10296

10296

10680

11

10296

10680

10680

11064

11064

11448

11448

11832

11832

12216

12

11832

11832

12216

12216

12576

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12960

12960

13536

13536

13

12960

13536

13536

14112

14112

14688

14688

14688

15264

15264

14

14688

14688

15264

15264

15840

15840

16416

16416

16992

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15

15840

15840

16416

16416

16992

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17568

17568

18336

18336

16

16416

16992

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17568

17568

18336

18336

19080

19080

19848

17

18336

19080

19080

19848

19848

20616

20616

20616

21384

21384

18

19848

20616

21384

21384

22152

22152

22920

22920

23688

23688

19

22152

22152

22920

22920

23688

24496

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25456

25456

25456

20

23688

24496

24496

25456

25456

26416

26416

27376

27376

28336

21

25456

26416

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27376

27376

28336

28336

29296

29296

30576

22

27376

28336

28336

29296

29296

30576

30576

31704

31704

32856

23

29296

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30576

30576

31704

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32856

32856

34008

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24

31704

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34008

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35160

35160

36696

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25

32856

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34008

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35160

35160

36696

36696

37888

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26

37888

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39232

40576

40576

40576

42368

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43816

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26A

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34008

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35160

36696

36696

36696

37888

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39232

61

62

63

64

65

66

67

68

69

70

0

1672

1736

1736

1800

1800

1800

1864

1864

1928

1928

1

2216

2280

2280

2344

2344

2408

2472

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2536

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2

2728

2792

2856

2856

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2984

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3112

3112

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3

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3752

3752

3880

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4008

4008

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4

4392

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4584

4584

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4776

4968

4968

4968

5

5352

5544

5544

5736

5736

5736

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5992

5992

6200

6

6456

6456

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6712

6712

6968

6968

6968

7224

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7

7480

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7736

7736

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8248

8248

8504

8504

8

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8760

8760

9144

9144

9144

9528

9528

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9912

9

9528

9912

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10296

10296

10296

10680

10680

11064

11064

10

10680

11064

11064

11448

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11448

11832

11832

12216

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11

12216

12576

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12960

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13536

13536

13536

14112

14112

12

14112

14112

14112

14688

14688

15264

15264

15264

15840

15840

13

15840

15840

16416

16416

16992

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16992

17568

17568

18336

14

17568

17568

18336

18336

18336

19080

19080

19848

19848

19848

15

18336

19080

19080

19848

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20616

20616

20616

21384

21384

16

19848

19848

20616

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21384

21384

22152

22152

22152

22920

17

22152

22152

22920

22920

23688

23688

24496

24496

24496

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18

24496

24496

24496

25456

25456

26416

26416

27376

27376

27376

19

26416

26416

27376

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28336

28336

29296

29296

29296

30576

20

28336

29296

29296

29296

30576

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31704

31704

31704

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21

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31704

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32856

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34008

34008

35160

35160

22

32856

34008

34008

34008

35160

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36696

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36696

37888

23

35160

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37888

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37888

39232

39232

40576

24

36696

37888

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39232

39232

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42368

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42368

25

39232

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40576

40576

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42368

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43816

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43816

26

45352

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46888

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48936

48936

48936

51024

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52752

26A

40576

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40576

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42368

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43816

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71

72

73

74

75

76

77

78

79

80

0

1992

1992

2024

2088

2088

2088

2152

2152

2216

2216

1

2600

2600

2664

2728

2728

2792

2792

2856

2856

2856

2

3240

3240

3240

3368

3368

3368

3496

3496

3496

3624

3

4136

4264

4264

4392

4392

4392

4584

4584

4584

4776

4

5160

5160

5160

5352

5352

5544

5544

5544

5736

5736

5

6200

6200

6456

6456

6712

6712

6712

6968

6968

6968

6

7480

7480

7736

7736

7736

7992

7992

8248

8248

8248

7

8760

8760

8760

9144

9144

9144

9528

9528

9528

9912

8

9912

9912

10296

10296

10680

10680

10680

11064

11064

11064

9

11064

11448

11448

11832

11832

11832

12216

12216

12576

12576

10

12576

12576

12960

12960

12960

13536

13536

13536

14112

14112

11

14112

14688

14688

14688

15264

15264

15840

15840

15840

16416

12

16416

16416

16416

16992

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17568

17568

17568

18336

18336

13

18336

18336

19080

19080

19080

19848

19848

19848

20616

20616

14

20616

20616

20616

21384

21384

22152

22152

22152

22920

22920

15

22152

22152

22152

22920

22920

23688

23688

23688

24496

24496

16

22920

23688

23688

24496

24496

24496

25456

25456

25456

26416

17

25456

26416

26416

26416

27376

27376

27376

28336

28336

29296

18

28336

28336

29296

29296

29296

30576

30576

30576

31704

31704

19

30576

30576

31704

31704

32856

32856

32856

34008

34008

34008

20

32856

34008

34008

34008

35160

35160

35160

36696

36696

36696

21

35160

36696

36696

36696

37888

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39232

39232

39232

40576

22

37888

39232

39232

40576

40576

40576

42368

42368

42368

43816

23

40576

40576

42368

42368

43816

43816

43816

45352

45352

45352

24

43816

43816

45352

45352

45352

46888

46888

46888

48936

48936

25

45352

45352

46888

46888

46888

48936

48936

48936

51024

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26

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

26A

45352

46888

46888

48936

48936

48936

51024

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52752

81

82

83

84

85

86

87

88

89

90

0

2280

2280

2280

2344

2344

2408

2408

2472

2472

2536

1

2984

2984

2984

3112

3112

3112

3240

3240

3240

3240

2

3624

3624

3752

3752

3880

3880

3880

4008

4008

4008

3

4776

4776

4776

4968

4968

4968

5160

5160

5160

5352

4

5736

5992

5992

5992

5992

6200

6200

6200

6456

6456

5

7224

7224

7224

7480

7480

7480

7736

7736

7736

7992

6

8504

8504

8760

8760

8760

9144

9144

9144

9144

9528

7

9912

9912

10296

10296

10296

10680

10680

10680

11064

11064

8

11448

11448

11448

11832

11832

12216

12216

12216

12576

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9

12960

12960

12960

13536

13536

13536

13536

14112

14112

14112

10

14112

14688

14688

14688

14688

15264

15264

15264

15840

15840

11

16416

16416

16992

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16992

17568

17568

17568

18336

18336

12

18336

19080

19080

19080

19080

19848

19848

19848

20616

20616

13

20616

21384

21384

21384

22152

22152

22152

22920

22920

22920

14

22920

23688

23688

24496

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24496

25456

25456

25456

25456

15

24496

25456

25456

25456

26416

26416

26416

27376

27376

27376

16

26416

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27376

27376

28336

28336

28336

29296

29296

17

29296

29296

30576

30576

30576

30576

31704

31704

31704

32856

18

31704

32856

32856

32856

34008

34008

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35160

35160

35160

19

35160

35160

35160

36696

36696

36696

37888

37888

37888

39232

20

37888

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39232

39232

39232

40576

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42368

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21

40576

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42368

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43816

43816

43816

45352

45352

22

43816

43816

45352

45352

45352

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46888

48936

48936

23

46888

46888

46888

48936

48936

48936

51024

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51024

24

48936

51024

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52752

52752

52752

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55056

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25

51024

52752

52752

52752

55056

55056

55056

55056

57336

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26

59256

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61664

61664

61664

63776

63776

63776

66592

66592

26A

52752

52752

55056

55056

55056

55056

57336

57336

57336

59256

91

92

93

94

95

96

97

98

99

100

0

2536

2536

2600

2600

2664

2664

2728

2728

2728

2792

1

3368

3368

3368

3496

3496

3496

3496

3624

3624

3624

2

4136

4136

4136

4264

4264

4264

4392

4392

4392

4584

3

5352

5352

5352

5544

5544

5544

5736

5736

5736

5736

4

6456

6456

6712

6712

6712

6968

6968

6968

6968

7224

5

7992

7992

8248

8248

8248

8504

8504

8760

8760

8760

6

9528

9528

9528

9912

9912

9912

10296

10296

10296

10296

7

11064

11448

11448

11448

11448

11832

11832

11832

12216

12216

8

12576

12960

12960

12960

13536

13536

13536

13536

14112

14112

9

14112

14688

14688

14688

15264

15264

15264

15264

15840

15840

10

15840

16416

16416

16416

16992

16992

16992

16992

17568

17568

11

18336

18336

19080

19080

19080

19080

19848

19848

19848

19848

12

20616

21384

21384

21384

21384

22152

22152

22152

22920

22920

13

23688

23688

23688

24496

24496

24496

25456

25456

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25456

14

26416

26416

26416

27376

27376

27376

28336

28336

28336

28336

15

28336

28336

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29296

29296

29296

29296

30576

30576

30576

16

29296

30576

30576

30576

30576

31704

31704

31704

31704

32856

17

32856

32856

34008

34008

34008

35160

35160

35160

35160

36696

18

36696

36696

36696

37888

37888

37888

37888

39232

39232

39232

19

39232

39232

40576

40576

40576

40576

42368

42368

42368

43816

20

42368

42368

43816

43816

43816

45352

45352

45352

46888

46888

21

45352

46888

46888

46888

46888

48936

48936

48936

48936

51024

22

48936

48936

51024

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51024

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52752

52752

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55056

23

52752

52752

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55056

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57336

57336

24

55056

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57336

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59256

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59256

61664

61664

25

57336

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59256

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61664

61664

61664

61664

63776

63776

26

66592

68808

68808

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71112

71112

71112

73712

73712

75376

26A

59256

59256

59256

61664

61664

61664

63776

63776

63776

66592

101

102

103

104

105

106

107

108

109

110

0

2792

2856

2856

2856

2984

2984

2984

2984

2984

3112

1

3752

3752

3752

3752

3880

3880

3880

4008

4008

4008

2

4584

4584

4584

4584

4776

4776

4776

4776

4968

4968

3

5992

5992

5992

5992

6200

6200

6200

6200

6456

6456

4

7224

7224

7480

7480

7480

7480

7736

7736

7736

7992

5

8760

9144

9144

9144

9144

9528

9528

9528

9528

9528

6

10680

10680

10680

10680

11064

11064

11064

11448

11448

11448

7

12216

12576

12576

12576

12960

12960

12960

12960

13536

13536

8

14112

14112

14688

14688

14688

14688

15264

15264

15264

15264

9

15840

16416

16416

16416

16416

16992

16992

16992

16992

17568

10

17568

18336

18336

18336

18336

18336

19080

19080

19080

19080

11

20616

20616

20616

21384

21384

21384

21384

22152

22152

22152

12

22920

23688

23688

23688

23688

24496

24496

24496

24496

25456

13

26416

26416

26416

26416

27376

27376

27376

27376

28336

28336

14

29296

29296

29296

29296

30576

30576

30576

30576

31704

31704

15

30576

31704

31704

31704

31704

32856

32856

32856

34008

34008

16

32856

32856

34008

34008

34008

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35160

35160

35160

35160

17

36696

36696

36696

37888

37888

37888

39232

39232

39232

39232

18

40576

40576

40576

40576

42368

42368

42368

42368

43816

43816

19

43816

43816

43816

45352

45352

45352

46888

46888

46888

46888

20

46888

46888

48936

48936

48936

48936

48936

51024

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21

51024

51024

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52752

52752

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55056

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22

55056

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59256

59256

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23

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59256

59256

59256

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61664

61664

61664

61664

63776

24

61664

61664

63776

63776

63776

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66592

66592

66592

66592

25

63776

63776

66592

66592

66592

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68808

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68808

71112

26

75376

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75376

75376

75376

75376

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26A

66592

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68808

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71112

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71112

71112

1

2

3

4

5

6

7

8

9

10

27

648

1320

1992

2664

3368

4008

4584

5352

5992

6712

28

680

1384

2088

2792

3496

4264

4968

5544

6200

6968

29

712

1480

2216

2984

3752

4392

5160

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6712

7480

30

776

1544

2344

3112

3880

4776

5544

6200

6968

7736

31

808

1608

2472

3240

4136

4968

5736

6456

7480

8248

32

840

1672

2536

3368

4264

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6712

7736

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32A

904

1864

2792

3752

4584

5544

6456

7480

8248

9144

33

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

33A

840

1736

2600

3496

4392

5160

5992

6968

7736

8760

33B

968

1992

2984

4008

4968

5992

6968

7992

8760

9912

34

1032

2088

3112

4264

5160

6200

7224

8504

9528

10296

11

12

13

14

15

16

17

18

19

20

27

7224

7992

8504

9144

9912

10680

11448

11832

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12960

28

7736

8504

9144

9912

10680

11064

11832

12576

13536

14112

29

8248

8760

9528

10296

11064

11832

12576

13536

14112

14688

30

8504

9528

10296

11064

11832

12576

13536

14112

14688

15840

31

9144

9912

10680

11448

12216

12960

14112

14688

15840

16416

32

9528

10296

11064

11832

12960

13536

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15264

16416

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32A

10296

11064

12216

12960

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14688

15840

16416

17568

18336

33

10680

11832

12960

13536

14688

15840

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17568

19080

19848

33A

9528

10296

11448

12216

12960

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14688

15840

16416

17568

33B

10680

11832

12960

13536

14688

15840

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17568

19080

19848

34

11448

12576

13536

14688

15840

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17568

19080

19848

20616

21

22

23

24

25

26

27

28

29

30

27

14112

14688

15264

15840

16416

16992

17568

18336

19080

19848

28

14688

15264

16416

16992

17568

18336

19080

19848

20616

21384

29

15840

16416

16992

17568

18336

19080

19848

20616

21384

22152

30

16416

16992

18336

19080

19848

20616

21384

22152

22920

23688

31

17568

18336

19080

19848

20616

21384

22152

22920

23688

24496

32

17568

19080

19848

20616

21384

22152

22920

23688

24496

25456

32A

19848

20616

21384

22152

22920

24496

25456

26416

27376

27376

33

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

33A

18336

19080

19848

20616

22152

22920

23688

24496

25456

26416

33B

20616

21384

22920

23688

24496

25456

26416

27376

28336

29296

34

22152

22920

24496

25456

26416

27376

28336

29296

30576

31704

31

32

33

34

35

36

37

38

39

40

27

20616

21384

22152

22920

22920

23688

24496

25456

25456

26416

28

22152

22152

22920

23688

24496

25456

26416

26416

27376

28336

29

22920

23688

24496

25456

26416

26416

27376

28336

29296

29296

30

24496

25456

25456

26416

27376

28336

29296

29296

30576

31704

31

25456

26416

27376

28336

29296

29296

30576

31704

31704

32856

32

26416

27376

28336

29296

29296

30576

31704

32856

32856

34008

32A

28336

29296

30576

31704

32856

32856

34008

35160

36696

36696

33

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

33A

27376

27376

29296

29296

30576

30576

31704

32856

34008

35160

33B

30576

31704

32856

34008

35160

35160

36696

37888

39232

39232

34

32856

34008

35160

35160

36696

37888

39232

39232

40576

42368

41

42

43

44

45

46

47

48

49

50

27

27376

27376

28336

29296

29296

30576

31704

31704

32856

32856

28

29296

29296

30576

30576

31704

32856

32856

34008

34008

35160

29

30576

31704

31704

32856

34008

34008

35160

35160

36696

36696

30

31704

32856

34008

34008

35160

36696

36696

37888

37888

39232

31

34008

35160

35160

36696

36696

37888

39232

39232

40576

40576

32

35160

35160

36696

37888

37888

39232

40576

40576

42368

42368

32A

37888

39232

40576

40576

42368

42368

43816

43816

45352

46888

33

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

33A

35160

36696

36696

37888

39232

40576

40576

40576

42368

43816

33B

40576

40576

42368

43816

43816

45352

46888

46888

48936

48936

34

42368

43816

45352

46888

46888

48936

48936

51024

51024

52752

51

52

53

54

55

56

57

58

59

60

27

34008

34008

35160

35160

36696

36696

37888

37888

39232

39232

28

35160

36696

36696

37888

39232

39232

40576

40576

42368

42368

29

37888

39232

39232

40576

40576

42368

42368

43816

43816

45352

30

40576

40576

42368

42368

43816

43816

45352

45352

46888

46888

31

42368

42368

43816

45352

45352

46888

46888

46888

48936

48936

32

43816

43816

45352

46888

46888

46888

48936

48936

51024

51024

32A

46888

48936

48936

51024

51024

52752

52752

52752

55056

55056

33

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

33A

43816

45352

45352

46888

48936

48936

48936

51024

51024

52752

33B

51024

51024

52752

52752

55056

55056

57336

57336

59256

59256

34

52752

55056

55056

57336

57336

59256

59256

61664

61664

63776

61

62

63

64

65

66

67

68

69

70

27

40576

40576

42368

42368

43816

43816

43816

45352

45352

46888

28

42368

43816

43816

45352

45352

46888

46888

46888

48936

48936

29

45352

45352

46888

46888

48936

48936

48936

51024

51024

52752

30

46888

48936

48936

51024

51024

51024

52752

52752

55056

55056

31

51024

51024

52752

52752

52752

55056

55056

55056

57336

57336

32

52752

52752

52752

55056

55056

57336

57336

57336

59256

59256

32A

57336

57336

59256

59256

59256

61664

61664

63776

63776

63776

33

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

33A

52752

55056

55056

55056

57336

57336

57336

59256

59256

61664

33B

59256

61664

61664

63776

63776

63776

66592

66592

68808

68808

34

63776

63776

66592

66592

68808

68808

71112

71112

71112

73712

71

72

73

74

75

76

77

78

79

80

27

46888

46888

48936

48936

48936

51024

51024

51024

52752

52752

28

48936

51024

51024

52752

52752

52752

55056

55056

55056

57336

29

52752

52752

55056

55056

55056

57336

57336

57336

59256

59256

30

55056

57336

57336

57336

59256

59256

59256

61664

61664

63776

31

59256

59256

59256

61664

61664

63776

63776

63776

66592

66592

32

61664

61664

61664

63776

63776

63776

66592

66592

66592

68808

32A

66592

66592

68808

68808

68808

71112

71112

73712

73712

73712

33

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

33A

61664

61664

63776

63776

66592

66592

66592

68808

68808

68808

33B

71112

71112

71112

73712

75376

76208

76208

76208

78704

78704

34

75376

76208

76208

78704

78704

78704

81176

81176

81176

84760

81

82

83

84

85

86

87

88

89

90

27

52752

55056

55056

55056

57336

57336

57336

59256

59256

59256

28

57336

57336

59256

59256

59256

61664

61664

61664

61664

63776

29

59256

61664

61664

61664

63776

63776

63776

66592

66592

66592

30

63776

63776

63776

66592

66592

66592

68808

68808

68808

71112

31

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

32

68808

71112

71112

71112

73712

73712

73712

75376

76208

76208

32A

75376

76208

76208

78704

78704

78704

81176

81176

81176

84760

33

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

33A

71112

71112

71112

73712

75376

75376

76208

76208

78704

78704

33B

81176

81176

81176

81176

84760

84760

84760

87936

87936

87936

34

84760

84760

87936

87936

87936

90816

90816

93800

93800

93800

91

92

93

94

95

96

97

98

99

100

27

59256

61664

61664

61664

63776

63776

63776

63776

66592

66592

28

63776

63776

66592

66592

66592

66592

68808

68808

68808

71112

29

66592

68808

68808

68808

71112

71112

71112

73712

73712

73712

30

71112

71112

73712

73712

75376

75376

76208

76208

78704

78704

31

75376

76208

76208

78704

78704

78704

81176

81176

81176

81176

32

78704

78704

78704

81176

81176

81176

84760

84760

84760

84760

32A

84760

84760

87936

87936

87936

87936

90816

90816

90816

93800

33

90816

90816

90816

93800

93800

93800

93800

97896

97896

97896

33A

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

33B

90816

90816

90816

93800

93800

93800

93800

97896

97896

100752

34

93800

97896

97896

97896

97896

101840

101840

101840

105528

105528

101

102

103

104

105

106

107

108

109

110

27

66592

66592

68808

68808

68808

71112

71112

71112

71112

73712

28

71112

71112

73712

73712

73712

75376

75376

76208

76208

76208

29

75376

76208

76208

76208

78704

78704

78704

81176

81176

81176

30

78704

81176

81176

81176

81176

84760

84760

84760

84760

87936

31

84760

84760

84760

84760

87936

87936

87936

87936

90816

90816

32

87936

87936

87936

87936

90816

90816

90816

93800

93800

93800

32A

93800

93800

93800

97896

97896

97896

97896

101840

101840

101840

33

97896

97896

97896

97896

97896

97896

97896

97896

97896

97896

33A

87936

87936

87936

90816

90816

90816

93800

93800

93800

97896

33B

100752

100752

100752

100752

100752

100752

100752

100752

100752

100752

34

105528

105528

105528

105528

105528

105528

105528

105528

105528

105528

[TS 36.211 clause 5.3.3]

For each layer the block of complex-valued symbols is divided into sets, each corresponding to one SC-FDMA symbol. Transform precoding shall be applied according to

resulting in a block of complex-valued symbols . The variable, where represents the bandwidth of the PUSCH in terms of resource blocks, and shall fulfil

where is a set of non-negative integers.

[TS 36.306 clause 4.1]

The field ue-Category defines a combined uplink and downlink capability. The parameters set by the UE Category are defined in subclause 4.2. Tables 4.1-1 and 4.1-2 define the downlink and, respectively, uplink physical layer parameter values for each UE Category. A UE indicating category 6 or 7 shall also indicate category 4. A UE indicating category 8 shall also indicate category 5. A UE indicating category 9 shall also indicate category 6 and 4. A UE indicating category 10 shall also indicate category 7 and 4. A UE indicating category 11 shall also indicate category 9, 6 and 4. A UE indicating category 12 shall also indicate category 10, 7 and 4. Table 4.1-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN.

Table 4.1-1: Downlink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of DL-SCH transport block bits received within a TTI (Note 1)

Maximum number of bits of a DL-SCH transport block received within a TTI

Total number of soft channel bits

Maximum number of supported layers for spatial multiplexing in DL

Category 1

10296

10296

250368

1

Category 2

51024

51024

1237248

2

Category 3

102048

75376

1237248

2

Category 4

150752

75376

1827072

2

Category 5

299552

149776

3667200

4

Category 6

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 7

301504

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

3654144

2 or 4

Category 8

2998560

299856

35982720

8

Category 9

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 10

452256

149776 (4 layers, 64QAM)

75376 (2 layers, 64QAM)

5481216

2 or 4

Category 11

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

Category 12

603008

149776 (4 layers, 64QAM)

195816 (4 layers, 256QAM)

75376 (2 layers, 64QAM)

97896 (2 layers, 256QAM)

7308288

2 or 4

NOTE 1: In carrier aggregation operation, the DL-SCH processing capability can be shared by the UE with that of MCH received from a serving cell. If the total eNB scheduling for DL-SCH and an MCH in one serving cell at a given TTI is larger than the defined processing capability, the prioritization between DL-SCH and MCH is left up to UE implementation.

Table 4.1-2: Uplink physical layer parameter values set by the field ue-Category

UE Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Category 1

5160

5160

No

Category 2

25456

25456

No

Category 3

51024

51024

No

Category 4

51024

51024

No

Category 5

75376

75376

Yes

Category 6

51024

51024

No

Category 7

102048

51024

No

Category 8

1497760

149776

Yes

Category 9

51024

51024

No

Category 10

102048

51024

No

Category 11

51024

51024

No

Category 12

102048

51024

No

[TS 36.306 clause 4.1A]

The fields ue-CategoryDL and ue-CategoryUL define downlink/uplink capability respectively. The parameters set by the UE DL/UL Categories are defined in subclause 4.2. Tables 4.1A-1 and 4.1A-2 define the downlink and, respectively, uplink physical layer parameter values for each UE DL/UL Category. Table 4.1A-4 defines the minimum capability for the maximum number of bits of a MCH transport block received within a TTI for an MBMS capable UE capable of reception via MBSFN. Table 4.1A-6 defines the only combinations for UE UL and DL Categories that are allowed to be signalled with ue-CategoryDL and ue-CategoryUL. Table 4.1A-6 also defines which UE Categories a UE shall indicate in addition to the combinations for UE UL and DL Categories. A UE indicating DL category 13 may indicate category 9 or 10 in ue-Category-v1170. A UE indicating Category M2 shall also indicate Category M1.

Table 4.1A-2: Uplink physical layer parameter values set by the field ue-CategoryUL

UE UL Category

Maximum number of UL-SCH transport block bits transmitted within a TTI

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Support for 64QAM in UL

Support for 256QAM in UL

UL Category M1

(Note 1)

1000 or 2984

1000 or 2984

No

No

UL Category M2

6968

6968

No

No

UL Category 0

1000

1000

No

No

UL Category 1bis

5160

5160

No

No

UL Category 3

51024

51024

No

No

UL Category 5

75376

75376

Yes

No

UL Category 7

102048

51024

No

No

UL Category 8

1497760

149776

Yes

No

UL Category 13

150752

75376

Yes

No

UL Category 14

9585664

149776

Yes

No

UL Category 15

226128

75376

Yes

No

UL Category 16

105528

105528

Yes

Yes

UL Category 17

2119360

211936

Yes

Yes

UL Category 18

211056

105528

Yes

Yes

UL Category 19

13563904

211936

Yes

Yes

UL Category 20

316584

105528

Yes

Yes

UL Category 21

301504

75376

Yes

No

NOTE 1: The UE supports "Maximum number of UL-SCH transport block bits transmitted within a TTI" and "Maximum number of bits of an UL-SCH transport block transmitted within a TTI" of 2984 bits if the UE indicates support of ce-PUSCH-NB-MaxTBS-r14. Otherwise the UE supports 1000 bits.

7.1.7.2.4.3 Test description

7.1.7.2.4.3.1 Pre-test conditions

System Simulator:

– Cell 1.

– Uplink and downlink bandwidth set to the maximum bandwidth for the E-UTRA Band under test as specified in Table 5.6.1-1 in [31] (to enable testing of up to maximum value). For Band 18, Band 19 and Band 25, based on industry requirement, uplink and downlink bandwidth set to 10MHz.

UE:

None.

Preamble:

– The UE is in state Loopback Activated (state 4) according to [18].

7.1.7.2.4.3.2 Test procedure sequence

Table 7.1.7.2.4.3.2-1: Maximum TBsize for different UE categories

UE Category

Maximum number of bits of an UL-SCH transport block transmitted within a TTI

Category 0

1000

Category 1bis

5160

Category 1

5160

Category 2

25456

Category 3

51024

Category 4

51024

Category 5

75376

Category 6

51024

Category 7

51024

Category 8

149776

Category 9

51024

Category 10

51024

Category 11

51024

Category 12

51024

Category 13

75376

Category 16

105528

Category 17

211936

Category 18

105528

Category 19

211936

Category 20

105528

Table 7.1.7.2.4.3.2-2: Number of downlink PDCP SDUs and PDCP SDU size used as test data

TBsize

[bits]

Number of PDCP SDUs, NSDUs

PDCP SDU size

[bits]

See note 1

104 ≤ TBsize ≤12096

note 2

1

8*FLOOR((TBsize – 96)/8)

12097 ≤ TBsize ≤24128

2

8*FLOOR((TBsize – 128)/16))

24129 ≤ TBsize ≤ 36152

3

8*FLOOR((TBsize – 152)/24))

36153 ≤ TBsize ≤48184

4

8*FLOOR((TBsize – 184)/32))

48185 ≤ TBsize ≤60208

5

8*FLOOR((TBsize – 208)/40))

60209 ≤ TBsize ≤ 72240

6

8*FLOOR((TBsize – 240)/48))

72241 ≤ TBsize ≤ 84264

7

8*FLOOR((TBsize – 264)/56))

84265 ≤ TBsize ≤ 96296

8

8*FLOOR((TBsize – 296)/64))

TBsize > 96296

9

8*FLOOR((TBsize – 320)/72))

Note 1: Each PDCP SDU is limited to 1500 octets (to keep below maximum SDU size of ESM as specified in TS 24.301 clause 9.9.4.12).

N PDCP SDUs are transmitted in N AMD PDUs concatenated into a MAC PDU. The PDCP SDU size of each PDCP SDU is

PDCP SDU size = (TBsize – N*PDCP header size – N*AMD PDU header size – MAC header – Size of Timing Advance – RLC Status PDU size) / N, where

PDCP header size is 16 bits for the RLC AM and 12-bit SN case;
AMD PDU header size is 16 bits;
MAC header si40 bits as MAC header size can be:

1) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (16 bits for MAC SDU for RLC Status PDU) + R/R/E/LCID MAC subheader (8 bits for MAC SDU for AMD PDU) = 8 + 16 + 8 bits= 32 bits
or

2) R/R/E/LCID MAC subheader (8 bits for Timing Advance) + R/R/E/LCID MAC subheader (24 bits for MAC SDU for AMD PDU, Note: Length can be of 2 bytes depending upon the size of AMD PDU)+ R/R/E/LCID MAC subheader (8 bits for MAC SDU for RLC Status PDU) + = 8+24 + 8 bits = 40 bits

Therefore Maximum MAC header size can be 40 bits

Size of Timing Advance MAC CE is 8 bits (if no Timing Advance and/or RLC status needs to be sent, padding will occur instead)

RLC Status PDU size = 16 bit size =

This gives:

PDCP SDU size = 8*FLOOR((TBsize – N*16- 8*CEIL((16+(N-1)*12)/8) –64)/(8*N)) bits.

Note 2: According to TS 36.213 Table 7.1.7.2.4-1 and the final PDCP SDU size formula in Note 1, the smallest TBsize that can be tested is 104 bits.

Table 7.1.7.2.4.3.2-2a: Bandwidth Dependent Parameters

Max Bandwidth

Max

5 MHz

25

10 MHz

50

15 MHz

75

20 MHz

100

Note: Maximum bandwidth for EUTRA bands is 5/10/15/20 MHz.

Table 7.1.7.2.4.3.2-3: Main behaviour

St

Procedure

Message Sequence

TP

Verdict

U – S

Message

1

The SS ignores scheduling requests and does not allocate any uplink grant.

EXCEPTION: Steps 2 to 7 are repeated for values of from 1 to Max and from 0 to 28, where satisfies values equal to and where is a set of non-negative integers.

2

SS looks up in table 8.6.1-3 in TS 36.213 based on the value of .

ELSE

SS looks up TBsize in table 7.1.7.2.4-1 in TS 36.213 based on values of and .

EXCEPTION: Steps 3 to 7 are performed if TBsize is less than or equal to UE capability “Maximum number of UL-SCH transport block bits received within a TTI” as specified in Table 7.1.7.2.4.3.2-1 and larger than or equal to 104 bits as specified in Table 7.1.7.2.4.3.2-2.

3

SS creates one or more PDCP SDUs, depending on TBsize, in accordance with Table 7.1.7.2.4.3.2-2.

4

After 300ms, the SS transmits all PDCP SDUs (NSDUs) as created in step 3 in a MAC PDU.

<–

MAC PDU (NSDUs x PDCP SDU)

5

After 60ms of step 4, the allocates an uplink grant SS indicating DCI Format 0 with a RVI correspondent to as specified in 8.1 in TS 36.213 and modulation order and coding scheme as specified in Table 8.6.1-1 in TS 36.213.

(Note 1)

<–

(UL Grant)

DCI: (DCI Format 0, RVI (),,)

6

Void

7

CHECK: Does UE return the same number of PDCP SDUs with same content as transmitted by the SS in step 4 using the Resource Block Assignment and modulation and coding scheme as configured by the SS in step 5?

–>

MAC PDU (NSDUs x PDCP SDU)

1

P

Note 1: The SS use the UE declared ICS pc_UL_64QAM and ICS pc_UL_256QAM to set the modulation order depending on if UE supports uplink 256QAM, 64QAM or not as specified in sub-clause 8.6.1 in TS 36.213.

7.1.7.2.4.3.3 Specific Message Contents

Table 7.1.2.4.3.3-0A PhysicalConfigDedicated-DEFAULT (Table 7.1.7.2.4.3.2-3 step 0)

Derivation Path: 36.508 clause 4.8.2, Table 4.8.2.1.6-1

Information Element

Value/Remark

Comment

Condition

PhysicalConfigDedicated-DEFAULT ::= SEQUENCE {

csi-RS-ConfigNZPToAddModListExt-r13

Not present

csi-RS-ConfigNZPToReleaseListExt-r13

Not present

cqi-ReportConfig-v1320

Not present

typeA-SRS-TPC-PDCCH-Group-r14

Not present

must-Config-r14

Not present

pusch-EnhancementsConfig-r14

Not present

ce-pdsch-pusch-EnhancementConfig-r14

Not present

antennaInfo-v1430

Not present

pucch-ConfigDedicated-v1430

Not present

pdsch-ConfigDedicated-v1430

Not present

pusch-ConfigDedicated-v1430 SEQUENCE {

ce-PUSCH-NB-MaxTBS-r14

Not present

ce-PUSCH-MaxBandwidth-r14

Not present

tdd-PUSCH-UpPTS-r14

Not present

ul-DMRS-IFDMA-r14

FALSE

enable256QAM-r14 CHOICE {

Setup CHOICE {

tpc-SubframeSet-NotConfigured-r14 SEQUENCE {

dci-Format0-r14

TRUE

dci-Format4-r14

FALSE

}

}

}

}

}

}

Table 7.1.7.2.4.3.3-1: UECapabilityInformation (Preamble Table 4.5.2.3-1 [18]: Step 13)

Derivation Path: 36.508 table 4.6.1-23

Information Element

Value/remark

Comment

Condition

UECapabilityInformation ::= SEQUENCE {

criticalExtensions CHOICE {

c1 CHOICE{

ueCapabilityInformation-r8 SEQUENCE {

ue-CapabilityRAT-ContainerList SEQUENCE (SIZE (1..maxRAT-Capabilities)) OF SEQUENCE {

1 entry

ueCapabilityRAT-Container

ue-EUTRA-Capability SEQUENCE {

ue-Category

Checked against UE Category indications in the PICS

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

nonCriticalExtension SEQUENCE {

ue-CategoryUL-v1430

Checked against UE Category indications in the PICS

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}

}