8.7.8 TDD FDD (DC)
36.1013GPPEvolved Universal Terrestrial Radio Access (E-UTRA)Release 18TSUser Equipment (UE) radio transmission and reception
The parameters specified in Table 8.7.8-1 are valid for all TDD FDD DC tests unless otherwise stated.
Table 8.7.8-1: Common Test Parameters (TDD FDD DC)
Parameter |
Unit |
Value |
||||
Uplink downlink configuration for TDD CC |
2 (Note 2) |
|||||
Special subframe configuration for TDD CC |
4 |
|||||
Cyclic prefix |
Normal |
|||||
Cell ID |
0 |
|||||
Inter-TTI Distance |
1 |
|||||
Number of HARQ processes per component carrier |
Processes |
8 for FDD CC; 7 for TDD CC |
||||
Maximum number of HARQ transmission |
4 |
|||||
Redundancy version coding sequence |
{0,0,1,2} for 64QAM and 256QAM |
|||||
Number of OFDM symbols for PDCCH per component carrier |
OFDM symbols |
1 |
||||
Cross carrier scheduling |
Not configured |
|||||
Propagation condition |
Static propagation condition No external noise sources are applied |
|||||
Transmission mode |
TM3 |
|||||
Codebook subset restriction |
10 |
|||||
Antenna configuration |
2×2 |
|||||
at antenna port (dBm/15kHz) |
-85 |
|||||
Symbols for unused PRBs |
OP.1 TDD for TDD CC; OP.1 FDD for FDD CC |
|||||
ACK/NACK feedback mode |
Separate ACK/NACK feedbacks with PUCCH format 3 on the MCG and SCG |
|||||
Time offset between MCG CC and SCG CC |
μs |
0 for UE under test supporting synchronous dual connectivity; 500 for UE under test supporting both asynchronous and synchrounous dual connectivity (Note 1) |
||||
Downlink power allocation |
dB |
-3 |
||||
dB |
-3 |
|||||
σ |
dB |
0 |
||||
Note 1: Asynchronous and synchrous dual connectivity are defined in TS36.300 [11]. Note 2: If the UE supports both SCG bearer and Split bearer, the Split bearer is configured. |
For UE not supporting 256QAM, the requirements are specified in Table 8.7.8-2, with the addition of the parameters in Table 8.7.8-1 and the downlink physical channel setup according to Annex C.3.2. The test points are applied to UE category and bandwidth combination with maximum aggregated bandwidth as specified inTable 8.7.8-3. The TB success rate shall be sustained during at least 300 frames.
For UE supporting 256QAM, the requirements are specified in Table 8.7.8-4, with the addition of the parameters in Table 8.7.7-1 and the downlink physical channel setup according to Annex C.3.2. The test points are applied to UE category and bandwidth combination with maximum aggregated bandwidth as specified inTable 8.7.8-5. The TB success rate shall be sustained during at least 300 frames. For UE supporting 256QAM, the requirements in Table 8.7.8-2 are not applicable.
The applicability of ther requirements are specified in Clause 8.1.2.3A.
Table 8.7.8-2: Minimum requirement (TDD FDD DC 64QAM)
Test number |
Bandwidth (MHz) |
Number of bits of a DL-SCH transport block received within a TTI (for normal/special subframe for TDD, except for subframe #5) |
Measurement channel |
Reference value TB success rate across CGs(%) |
||||||
DRB type of Split bearer (Note 2) |
DRB type of SCG bearer (Note 3) |
|||||||||
MCG |
SCG |
|||||||||
Total |
FDD CC |
TDD CC |
FDD CC |
TDD CC |
FDD CC |
TDD CC |
||||
1 |
2×20 |
20 |
20 |
75376 (Note 4) |
75376/0 (Note 4) |
R.31-4 FDD |
R.31-4A TDD |
85 |
85 |
85 |
Note 1: For 2 layer transmissions, 2 transport blocks are received within a TTI. Note 2: For the configuration of DRB type of Split bearer,the TB success rate across CGs is defined as TB success rate = 100%*NDL_correct_rx/ (NDL_newtx + NDL_retx), where NDL_newtx is the number of newly transmitted DL transport blocks, NDL_retx is the number of retransmitted DL transport blocks, and NDL_correct_rx is the number of correctly received DL transport blocks. All the above numbers of transmitted, retransmitted or correctly received DL transport blocks are calculated as the sum of the numbers of DL transport blockes across all the CGs used for DC transmission or reception. Note 3: For the configuration of DRB type of SCG bearer, the TB success rate across CGs is defined as TB success rate = 100%*NDL_correct_rx/ (NDL_newtx + NDL_retx), where NDL_newtx is the number of newly transmitted DL transport blocks, NDL_retx is the number of retransmitted DL transport blocks, and NDL_correct_rx is the number of correctly received DL transport blocks. All the above numbers of transmitted, retransmitted or correctly received DL transport blocks are calculated as the sum of the numbers of DL transport blockes per CG used for DC transmission or reception, separately. Note 4: 71112 bits for sub-frame 5. |
Table 8.7.8-3: Test points for sustained data rate (FRC TDD FDD DC 64QAM)
CA config |
Maximum supported Bandwidth/ Bandwidth combination (MHz) |
Cat. 6, 7 |
Cat. 9,10 |
|||
Total |
FDD CC |
TDD CC |
||||
DC with 2CCs |
2×20 |
20 |
20 |
1 |
1 |
Table 8.7.8-4: Minimum requirement (TDD FDD DC 256QAM)
Test number |
Bandwidth (MHz) |
Measurement channel |
Reference value TB success rate across CGs(%) |
|||||
DRB type of Split bearer (Note 2) |
DRB type of SCG bearer (Note 3) |
|||||||
MCG |
SCG |
|||||||
Total |
FDD CC |
TDD CC |
FDD CC |
TDD CC |
||||
1 |
2×20 |
20 |
20 |
R.68 FDD |
R.68-3 TDD |
85 |
85 |
85 |
Note 1: For 2 layer transmissions, 2 transport blocks are received within a TTI. Note 2: For the configuration of DRB type of Split bearer, the TB success rate across CGs is defined as TB success rate = 100%*NDL_correct_rx/ (NDL_newtx + NDL_retx), where NDL_newtx is the number of newly transmitted DL transport blocks, NDL_retx is the number of retransmitted DL transport blocks, and NDL_correct_rx is the number of correctly received DL transport blocks. All the above numbers of transmitted, retransmitted or correctly received DL transport blocks are calculated as the sum of the numbers of DL transport blockes across all the CGs used for DC transmission or reception. Note 3: For the configuration of DRB type of SCG bearer, the TB success rate across CGs is defined as TB success rate = 100%*NDL_correct_rx/ (NDL_newtx + NDL_retx), where NDL_newtx is the number of newly transmitted DL transport blocks, NDL_retx is the number of retransmitted DL transport blocks, and NDL_correct_rx is the number of correctly received DL transport blocks. All the above numbers of transmitted, retransmitted or correctly received DL transport blocks are calculated as the sum of the numbers of DL transport blockes per CG used for DC transmission or reception, separately. |
Table 8.7.8-5: Test points for sustained data rate (FRC TDD FDD DC 256QAM)
CA config |
Maximum supported Bandwidth/ Bandwidth combination (MHz) |
Cat. 11, 12 |
DL Cat. 13 |
||||||
Total |
FDD CC |
TDD CC |
DL Cat. 11, 12 |
||||||
DC with 2CCs |
2×20 |
20 |
20 |
1 |
1 |
||||
Note 1: If DL category is signalled by the UE under test, then select the test point according to UE DL Category. Otherwise, select the test point according to the UE category signalled. |