7.4 OTA Dynamic range

37.145-23GPPActive Antenna System (AAS) Base Station (BS) conformance testingPart 2: radiated conformance testingRelease 17TS

7.4.1 Definition and applicability

The OTA dynamic range is a measure of the capability of the receiver unit to receive a wanted signal in the presence of an interfering signal inside the received channel bandwidth or the capability of receiving high level of wanted signal.

The requirement applies at the RIB when the AoA of the incident wave of a received signal and the interfering signal are from the same direction and are within the OTA REFSENS RoAoA.

The wanted and interfering signals apply to each supported polarization, under the assumption of polarization match.

7.4.2 Minimum Requirement

For AAS BS in MSR operation the minimum requirement is defined in TS 37.105 [6], clause 10.4.2.

For AAS BS in single RAT UTRA operation the minimum requirement is defined in TS 37.105 [6], clause 10.4.3.

For AAS BS in single RAT E-UTRA operation the minimum requirement is defined in TS 37.105 [6], clause 10.4.4.

7.4.3 Test purpose

To verify that at the dynamic range of the receiver shall fulfil the specified limit.

7.4.4 Method of test

7.4.4.1 Initial conditions

Test environment: normal; see annex G.2.

RF channels to be tested for single carrier: M; see clause 4.12.1.

Directions to be tested: OTA REFSENS receiver target reference direction (see table 4.10-2, D11.30).

7.4.4.2 Procedure

1) Place the AAS BS with its manufacturer declared coordinate system reference point in the same place as calibrated point in the test system, as shown in Annex D2.2

2) Align the manufacturer declared coordinate system orientation of the AAS BS with the test system.

3) Align the BS with the test antenna in the declared direction to be tested.

4) Align the NR BS to that the wanted signal and interferer signal is polarization matched with the test antenna(s)..

5) Set the test signal mean power so the calibrated radiated power at the AAS BS Antenna Array coordinate system reference point is as specified as follows:

a) Set the signal generator for the wanted signal to transmit:

– as specified in table 7.4.5.1-1 for UTRA.

– as specified in table 7.4.5.2-3 to table 7.4.5.2-5 for E-UTRA.

– as specified in table 7.4.5.3-3 to table 7.4.5.2-5 for NR.

b) Set the Signal generator for the AWGN interfering signal at the same frequency as the wanted signal to transmit:

– as specified in table 7.4.5.1-1 for UTRA.

– as specified in table 7.4.5.2-3 to table 7.4.5.2-5 for E-UTRA.

– as specified in table 7.4.5.3-3 to table 7.4.5.23-5 for NR.

6) Measure:

– BER according to annex C in TS 25.141 [10] for FDD UTRA.

– Throughput according to annex E in TS 36.141 [12] for E-UTRA.

– Throughput according to TS 38.141-2 [34] for NR.

7) Repeat for all supported polarizations.

In addition, for multi-band RIB(s), the following steps shall apply:

8) For multi-band RIBs and single band tests, repeat the steps above per involved band where single band test configurations and test models shall apply with no carrier activated in the other band.

7.4.5 Test Requirement

7.4.5.1 UTRA FDD operation

The BER shall not exceed 0,001 for the parameters specified in table 7.3.5.1-1.

Table 7.4.5.1-1: Dynamic range

Parameter

Level

Wide Area BS

Level Medium Range BS

Level Local Area BS

Unit

Reference measurement channel data rate

12.2

12.2

12.2

kbps

Wanted signal mean power

-90.7 – ΔOTAREFSENS

-80.7 – ΔOTAREFSENS

-76.7 – ΔOTAREFSENS

dBm

Interfering AWGN signal

-73 – ΔOTAREFSENS

-63 – ΔOTAREFSENS

-59 – ΔOTAREFSENS

dBm/3.84 MHz

NOTE: If the above Test Requirement differs from the Minimum Requirement then the Test Tolerance applied for this test is non-zero. The Test Tolerance for this test is defined in clause 4.1.2 and the explanation of how the Minimum Requirement has been relaxed by the Test Tolerance is given in annex C.

7.4.5.2 E-UTRA operation

For each measured E-UTRA carrier, the throughput shall be ≥ 95% of the maximum throughput of the reference measurement channel as specified in annex A in 36.141 [12]TS 36.141 [12] with parameters specified in table 7.3.5.3-1 for an AAS BS of Wide Area BS class, in Table7.3.5.3-2 for an AAS BS of Local Area BS class and in table 7.3.5.3-3 for AAS BS of Medium Range BS class.

Table 7.4.5.2-1: AAS BS of Wide Area BS class dynamic range

E-UTRA

channel bandwidth [MHz]

Reference measurement channel

Wanted signal mean power [dBm]

Interfering signal mean power [dBm] / BWConfig

Type of interfering signal

1.4

FRC A2-1 in TS 36.104 [4], annex A.2

-76.0 – ΔOTAREFSENS

-88.7 – ΔOTAREFSENS

AWGN

3

FRC A2-2 in TS 36.104 [4], annex A.2

-72.1 – ΔOTAREFSENS

-84.7 – ΔOTAREFSENS

AWGN

5

FRC A2-3 in TS 36.104 [4], annex A.2

-69.9 – ΔOTAREFSENS

-82.5 – ΔOTAREFSENS

AWGN

10

FRC A2-3 in TS 36.104 [4], annex A.2

(NOTE)

-69.9 – ΔOTAREFSENS

-79.5 – ΔOTAREFSENS

AWGN

15

FRC A2-3 in TS 36.104 [4], annex A.2

(NOTE)

-69.9 – ΔOTAREFSENS

-77.7 – ΔOTAREFSENS

AWGN

20

FRC A2-3 in TS 36.104 [4], annex A.2

(NOTE)

-69.9 – ΔOTAREFSENS

-76.4 – ΔOTAREFSENS

AWGN

NOTE: The wanted signal mean power is the power level of a single instance of the reference measurement channel. This requirement shall be met for each consecutive application of a single instance of FRC A2-3 mapped to disjoint frequency ranges with a width of 25 resource blocks each.

Table 7.3.5.3-2: AAS BS of Local Area BS class dynamic range

E-UTRA

channel bandwidth [MHz]

Reference measurement channel

Wanted signal mean power [dBm]

Interfering signal mean power [dBm] / BWConfig

Type of interfering signal

1.4

FRC A2-1 in TS 36.104 [4], annex A.2

-68.0 – ΔOTAREFSENS

-80.7 – ΔOTAREFSENS

AWGN

3

FRC A2-2 in TS 36.104 [4], annex A.2

-64.1 – ΔOTAREFSENS

-76.7 – ΔOTAREFSENS

AWGN

5

FRC A2-3 in TS 36.104 [4], annex A.2

-61.9 – ΔOTAREFSENS

-74.5 – ΔOTAREFSENS

AWGN

10

FRC A2-3 in TS 36.104 [4], annex A.2 (NOTE 1)

-61.9 – ΔOTAREFSENS

-71.5 – ΔOTAREFSENS

AWGN

15

FRC A2-3 in TS 36.104 [4], annex A.2 (NOTE 1)

-61.9 – ΔOTAREFSENS

-69.7 – ΔOTAREFSENS

AWGN

20

FRC A2-3 in TS 36.104 [4], annex A.2 (NOTE 1)

-61.9 – ΔOTAREFSENS

-68.4 – ΔOTAREFSENS

AWGN

NOTE 1: The wanted signal mean power is the power level of a single instance of the reference measurement channel. This requirement shall be met for each consecutive application of a single instance of FRC A2-3 mapped to disjoint frequency ranges with a width of 25 resource blocks each. This reference measurement channel is not applied for Band 46 nor Band 49.

NOTE 2: Void

Table 7.3.5.3-3: AAS BS of Medium Range BS class dynamic range

E-UTRA

channel bandwidth [MHz]

Reference measurement channel

Wanted signal mean power [dBm]

Interfering signal mean power [dBm] / BWConfig

Type of interfering signal

1.4

FRC A2-1 in TS 36.104 [4], annex A.2

-71.0 – ΔOTAREFSENS

-83.7 – ΔOTAREFSENS

AWGN

3

FRC A2-2 in TS 36.104 [4], annex A.2

-67.1 – ΔOTAREFSENS

-79.7 – ΔOTAREFSENS

AWGN

5

FRC A2-3 in TS 36.104 [4], annex A.2

-64.9 – ΔOTAREFSENS

-77.5 – ΔOTAREFSENS

AWGN

10

FRC A2-3 in TS 36.104 [4], annex A.2 (NOTE 1)

-64.9 – ΔOTAREFSENS

-74.5 – ΔOTAREFSENS

AWGN

15

FRC A2-3 in TS 36.104 [4], Annex A.2 (NOTE 1)

-64.9 – ΔOTAREFSENS

-72.7 – ΔOTAREFSENS

AWGN

20

FRC A2-3 in TS 36.104 [4], annex A.2 (NOTE 1)

-64.9 – ΔOTAREFSENS

-71.4 – ΔOTAREFSENS

AWGN

NOTE 1: The wanted signal mean power is the power level of a single instance of the reference measurement channel. This requirement shall be met for each consecutive application of a single instance of FRC A2-3 mapped to disjoint frequency ranges with a width of 25 resource blocks each. This reference measurement channel is not applied for Band 46.

NOTE 2: Void.

NOTE: If the above Test Requirement differs from the Minimum Requirement then the Test Tolerance applied for this test is non-zero. The Test Tolerance for this test is defined in clause 4.1.2 and the explanation of how the Minimum Requirement has been relaxed by the Test Tolerance is given in annex C.

7.4.5.3 NR operation

For each measured carrier, the throughput measured in step 6 of clause 7.4.4.2 shall be ≥ 95 % of the maximum throughput of the reference measurement channel as specified in TS 38.104 [33] annex A.2 with parameters specified in tables 7.4.5.3-1 to 7.4.5.3-3.

Table 7.4.5.3-1: Wide Area BS dynamic range

BS channel bandwidth (MHz)

Subcarrier spacing (kHz)

Reference measurement channel

Wanted signal mean power (dBm)

Interfering signal mean power (dBm) / BWConfig

Type of interfering signal

f ≤ 3.0 GHz

3.0 GHz < f ≤ 4.2 GHz

5

15

G-FR1-A2-1

-70.4 – ΔOTAREFSENS

-70.4 – ΔOTAREFSENS

-82.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-71.1 – ΔOTAREFSENS

-71.1 – ΔOTAREFSENS

10

15

G-FR1-A2-1

-70.4 – ΔOTAREFSENS

-70.4 – ΔOTAREFSENS

-79.3 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-71.1 – ΔOTAREFSENS

-71.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-68.1 – ΔOTAREFSENS

-68.1 – ΔOTAREFSENS

15

15

G-FR1-A2-1

-70.4 – ΔOTAREFSENS

-70.4 – ΔOTAREFSENS

-77.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-71.1 – ΔOTAREFSENS

-71.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-68.1 – ΔOTAREFSENS

-68.1 – ΔOTAREFSENS

20

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-76.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

25

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-75.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

30

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-74.4 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

35

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-73.7– ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

40

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-73.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

45

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-72.6 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

50

15

G-FR1-A2-4

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-72.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

60

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-71.3 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

70

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-70.7 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

80

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-70.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

90

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-69.5 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

100

30

G-FR1-A2-5

-64.2 – ΔOTAREFSENS

-64.2 – ΔOTAREFSENS

-69.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-64.5 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

NOTE: The wanted signal mean power is the power level of a single instance of the corresponding reference measurement channel. This requirement shall be met for each consecutive application of a single instance of the reference measurement channel mapped to disjoint frequency ranges with a width corresponding to the number of resource blocks of the reference measurement channel each, except for one instance that might overlap one other instance to cover the full BS channel bandwidth.

Table 7.4.5.3-2: Medium Range BS dynamic range

BS channel bandwidth (MHz)

Subcarrier spacing (kHz)

Reference measurement channel

Wanted signal mean power (dBm)

Interfering signal mean power (dBm) / BWConfig

Type of interfering signal

f ≤ 3.0 GHz

3.0 GHz < f ≤ 4.2 GHz

5

15

G-FR1-A2-1

-65.4 – ΔOTAREFSENS

-65.4 – ΔOTAREFSENS

-77.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-66.1 – ΔOTAREFSENS

-66.1 – ΔOTAREFSENS

10

15

G-FR1-A2-1

-65.4 – ΔOTAREFSENS

-65.4 – ΔOTAREFSENS

-74.3 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-66.1 – ΔOTAREFSENS

-66.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-63.1 – ΔOTAREFSENS

-63.1 – ΔOTAREFSENS

15

15

G-FR1-A2-1

-65.4 – ΔOTAREFSENS

-65.4 – ΔOTAREFSENS

-72.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-66.1 – ΔOTAREFSENS

-66.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-63.1 – ΔOTAREFSENS

-63.1 – ΔOTAREFSENS

20

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-71.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

25

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-70.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

30

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-69.4 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

35

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-68.7 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

40

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-68.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

45

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-67.6 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

50

15

G-FR1-A2-4

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-67.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

–59.2 – ΔOTAREFSENS

–59.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

60

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-66.3– ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

70

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-65.7 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

80

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-65.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

90

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-64.5 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

100

30

G-FR1-A2-5

-59.2 – ΔOTAREFSENS

-59.2 – ΔOTAREFSENS

-64.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-59.5 – ΔOTAREFSENS

-59.5 – ΔOTAREFSENS

NOTE: The wanted signal mean power is the power level of a single instance of the corresponding reference measurement channel. This requirement shall be met for each consecutive application of a single instance of the reference measurement channel mapped to disjoint frequency ranges with a width corresponding to the number of resource blocks of the reference measurement channel each, except for one instance that might overlap one other instance to cover the full BS channel bandwidth.

Table 7.4.5.3-3: Local Area BS dynamic range

BS channel bandwidth (MHz)

Subcarrier spacing (kHz)

Reference measurement channel

Wanted signal mean power (dBm)

Interfering signal mean power (dBm) / BWConfig

Type of interfering signal

f ≤ 3.0 GHz

3.0 GHz < f ≤ 4.2 GHz

5

15

G-FR1-A2-1

-62.4 – ΔOTAREFSENS

-62.4 – ΔOTAREFSENS

-74.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-63.1 – ΔOTAREFSENS

-63.1 – ΔOTAREFSENS

10

15

G-FR1-A2-1

-62.4 – ΔOTAREFSENS

-62.4 – ΔOTAREFSENS

-71.3 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-63.1 – ΔOTAREFSENS

-63.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-60.1 – ΔOTAREFSENS

-60.1 – ΔOTAREFSENS

15

15

G-FR1-A2-1

-62.4 – ΔOTAREFSENS

-62.4 – ΔOTAREFSENS

-69.5 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-2

-63.1 – ΔOTAREFSENS

-63.1 – ΔOTAREFSENS

60

G-FR1-A2-3

-60.1 – ΔOTAREFSENS

-60.1 – ΔOTAREFSENS

20

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-68.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

25

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-67.2 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

30

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-66.4 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

35

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-64.6 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

40

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-65.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

45

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-64.6 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

50

15

G-FR1-A2-4

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-64.1 – ΔOTAREFSENS

AWGN

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

60

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-63.3 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

70

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-62.7 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

80

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-62.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

90

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-61.5 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

100

30

G-FR1-A2-5

-56.2 – ΔOTAREFSENS

-56.2 – ΔOTAREFSENS

-61.1 – ΔOTAREFSENS

AWGN

60

G-FR1-A2-6

-56.5 – ΔOTAREFSENS

-56.5 – ΔOTAREFSENS

NOTE: The wanted signal mean power is the power level of a single instance of the corresponding reference measurement channel. This requirement shall be met for each consecutive application of a single instance of the reference measurement channel mapped to disjoint frequency ranges with a width corresponding to the number of resource blocks of the reference measurement channel each, except for one instance that might overlap one other instance to cover the full BS channel bandwidth.