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Content for
TR 38.786
Word version: 18.2.0
1…
5…
5
Operating bands and channel arrangement for SL evolution
6
Transmitter characteristics for NR SL evolution
7
Receiver characteristics for NR SL evolution
8
Co-channel coexistence between LTE Sidelink and NR Sidelink
$
Change history
5
Operating bands and channel arrangement for SL evolution
p. 12
5.1
Operating bands
p. 12
5.1.1
Operating bands for single carrier operation in unlicensed band
p. 12
5.1.2
Operating band combinations for inter-band con-current operation
p. 13
5.1.3
Operating band combinations for NR SL CA operation
p. 13
5.2
Channel bandwidth
p. 13
5.2.1
Channel bandwidth for single carrier operation in unlicensed band
p. 13
5.2.2
Channel bandwidth for inter-band con-current operation
p. 14
5.2.3
Channel bandwidth for NR SL CA operation
p. 14
5.3
Channel arrangement
p. 14
5.3.1
Channel spacing
p. 14
5.3.2
Channel raster
p. 15
5.3.3
Synchronization raster
p. 15
6
Transmitter characteristics for NR SL evolution
p. 15
6.1
Tx requirements for NR SL single carrier operation in unlicensed band
p. 15
6.1.1
Maximum output power for NR SL-U
p. 15
6.1.2
UE maximum output power reduction for NR SL-U
p. 16
6.1.2.1
MPR for SL-U operation in single CC
p. 19
6.1.2.1.1
MPR for simultaneous PSSCH/PSCCH transmission
p. 19
6.1.2.1.2
MPR for S-SSB transmission
p. 31
6.1.2.1.3
MPR for PSFCH transmission
p. 38
6.1.3
UE additional maximum output power reduction for NR SL-U
p. 45
6.1.3.1
A-MPR for SL-U with NS_28
p. 46
6.1.3.1.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 46
6.1.3.1.2
A-MPR for S-SSB transmission
p. 53
6.1.3.1.3
A-MPR for PSFCH transmission
p. 57
6.1.3.2
A-MPR for SL-U with NS_29
p. 61
6.1.3.2.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 61
6.1.3.2.2
A-MPR for S-SSB transmission
p. 64
6.1.3.2.3
A-MPR for PSFCH transmission
p. 66
6.1.3.3
A-MPR for SL-U with NS_30
p. 68
6.1.3.3.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 68
6.1.3.3.2
A-MPR for S-SSB transmission
p. 78
6.1.3.3.3
A-MPR for PSFCH transmission
p. 82
6.1.3.4
A-MPR for SL-U with NS_31
p. 86
6.1.3.4.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 86
6.1.3.4.2
A-MPR for S-SSB transmission
p. 92
6.1.3.4.3
A-MPR for PSFCH transmission
p. 96
6.1.3.5
A-MPR for SL-U with NS_53
p. 98
6.1.3.5.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 98
6.1.3.5.1.3
Qualcomm's simulation results (R4-2316791)
p. 103
6.1.3.5.2
A-MPR for S-SSB transmission
p. 103
6.1.3.5.3
A-MPR for PSFCH transmission
p. 106
6.1.3.6
A-MPR for SL-U with NS_54
p. 108
6.1.3.6.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 108
6.1.3.6.2
A-MPR for S-SSB transmission
p. 114
6.1.3.6.3
A-MPR for PSFCH transmission
p. 116
6.1.3.7
A-MPR for SL-U with NS_58
p. 118
6.1.3.7.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 118
6.1.3.7.2
A-MPR for S-SSB transmission
p. 123
6.1.3.7.3
A-MPR for PSFCH transmission
p. 127
6.1.3.7.3.1
LG Electronics' simulation results (R4-2315542 and R4-2321771)
p. 127
6.1.3.8
A-MPR for SL-U with NS_59
p. 129
6.1.3.8.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 129
6.1.3.8.2
A-MPR for S-SSB transmission
p. 131
6.1.3.8.3
A-MPR for PSFCH transmission
p. 133
6.1.3.9
A-MPR for SL-U with NS_60
p. 135
6.1.3.9.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 135
6.1.3.9.2
A-MPR for S-SSB transmission
p. 140
6.1.3.9.3
A-MPR for PSFCH transmission
p. 143
6.1.3.10
A-MPR for SL-U with NS_61
p. 145
6.1.3.10.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 145
6.1.3.10.2
A-MPR for S-SSB transmission
p. 150
6.1.3.10.3
A-MPR for PSFCH transmission
p. 154
6.1.3.11
A-MPR for SL-U with NS_63
p. 156
6.1.3.11.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 156
6.1.3.11.2
A-MPR for S-SSB transmission
p. 158
6.1.3.11.3
A-MPR for PSFCH transmission
p. 160
6.1.3.12
A-MPR for SL-U with NS_64
p. 162
6.1.3.12.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 162
6.1.3.12.2
A-MPR for S-SSB transmission
p. 165
6.1.3.12.3
A-MPR for PSFCH transmission
p. 167
6.1.3.13
A-MPR for SL-U with NS_65
p. 169
6.1.3.13.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 169
6.1.3.13.2
A-MPR for S-SSB transmission
p. 171
6.1.3.13.3
A-MPR for PSFCH transmission
p. 173
6.1.3.14
A-MPR for SL-U with NS_66
p. 175
6.1.3.14.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 175
6.1.3.14.2
A-MPR for S-SSB transmission
p. 177
6.1.3.14.3
A-MPR for PSFCH transmission
p. 179
6.1.3.15
A-MPR for SL-U with NS_67 or NS_71
p. 181
6.1.3.15.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 181
6.1.3.15.2
A-MPR for S-SSB transmission
p. 183
6.1.3.15.3
A-MPR for PSFCH transmission
p. 185
6.1.3.16
A-MPR for SL-U with NS_68
p. 187
6.1.3.16.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 187
6.1.3.16.2
A-MPR for S-SSB transmission
p. 189
6.1.3.16.3
A-MPR for PSFCH transmission
p. 191
6.1.3.17
A-MPR for SL-U with NS_69
p. 193
6.1.3.17.1
A-MPR for simultaneous PSSCH/PSCCH transmission
p. 193
6.1.3.17.2
A-MPR for S-SSB transmission
p. 195
6.1.3.17.3
A-MPR for PSFCH transmission
p. 197
6.1.4
Configured transmitted power for NR SL-U
p. 199
6.1.5
Minimum output power for NR SL-U
p. 199
6.1.6
Transmit OFF power for NR SL-U
p. 199
6.1.7
ON/OFF time mask for NR SL-U
p. 199
6.1.8
Power control for NR SL-U
p. 200
6.1.9
Transmit signal quality for NR SL-U
p. 200
6.1.9.1
Frequency Error
p. 200
6.1.9.2
EVM
p. 200
6.1.9.3
Carrier Leakage
p. 201
6.1.9.4
Equalizer spectrum flatness
p. 201
6.1.9.5
In-band Emission
p. 201
6.1.10
Spectrum emission mask for NR SL-U
p. 201
6.1.10.1
Occupied Bandwidth
p. 201
6.1.10.2
SEM
p. 201
6.1.10.3
A-SEM
p. 201
6.1.11
ACLR requirements for NR SL-U
p. 201
6.1.12
Spurious emissions for NR SL-U
p. 201
6.1.13
Spurious emission band UE co-existence for NR SL-U
p. 202
6.1.14
Transmit intermodulation for NR SL-U
p. 202
6.2
Tx requirements for inter-band con-current operation
p. 202
6.2.1
Maximum output power for inter-band con-current operation
p. 202
6.2.2
UE maximum output power reduction for inter-band con-current operation
p. 202
6.2.3
UE additional maximum output power reduction for inter-band con-current operation
p. 202
6.2.4
Configured transmitted power for inter-band con-current operation
p. 203
6.2.5
Minimum output power for inter-band con-current operation
p. 203
6.2.6
Transmit OFF power for inter-band con-current operation
p. 204
6.2.7
ON/OFF time mask for inter-band con-current operation
p. 204
6.2.8
Power control for inter-band con-current operation
p. 204
6.2.9
Transmit signal quality for inter-band con-current operation
p. 204
6.2.10
Spectrum emission mask for inter-band con-current operation
p. 204
6.2.11
ACLR requirements for inter-band con-current operation
p. 204
6.2.12
Spurious emissions for inter-band con-current operation
p. 204
6.2.13
Spurious emission band UE co-existence for inter-band con-current operation
p. 204
6.2.14
Transmit intermodulation for inter-band con-current operation
p. 205
6.3
Tx requirements for NR SL CA operation
p. 205
6.3.1
Maximum output power for NR SL CA operation
p. 205
6.3.2
UE maximum output power reduction for NR SL CA operation
p. 205
6.3.2.1
MPR for NR SL CA operation
p. 205
6.3.2.1.1
MPR for simultaneous PSSCH/PSCCH transmission
p. 205
6.3.2.1.2
MPR for PSFCH transmission
p. 216
6.3.2.1.3
MPR for S-SSB transmission
p. 223
6.3.3
UE additional maximum output power reduction for NR SL CA operation
p. 225
6.3.3.1
A-MPR for NR SL CA operation
p. 226
6.3.3.1.1
A-MPR for Intra-band contiguous SL CA operation
p. 226
6.3.3.1.2
LGE's A-MPR simulation results for SLCA_NS_52
p. 226
6.3.4
Configured transmitted power for NR SL CA operation
p. 227
6.3.5
Minimum output power for NR SL CA operation
p. 227
6.3.6
Transmit OFF power for NR SL CA operation
p. 228
6.3.7
ON/OFF time mask for NR SL CA operation
p. 228
6.3.8
Power control for NR SL CA operation
p. 228
6.3.9
Transmit signal quality for NR SL CA operation
p. 228
6.3.9.1
Frequency Error
p. 228
6.3.9.2
EVM
p. 228
6.3.9.3
Carrier Leakage
p. 228
6.3.9.4
In-band Emission
p. 229
6.3.10
Spectrum emission mask for NR SL CA operation
p. 229
6.3.10.1
Occupied Bandwidth
p. 229
6.3.10.2
SEM
p. 229
6.3.10.3
A-SEM
p. 229
6.3.11
ACLR requirements for NR SL CA operation
p. 229
6.3.12
Spurious emissions for NR SL CA operation
p. 229
6.3.13
Spurious emission band UE co-existence for NR SL CA operation
p. 229
6.3.14
Transmit intermodulation for NR SL CA operation
p. 230
7
Receiver characteristics for NR SL evolution
p. 230
7.1
Rx requirements for NR SL single carrier operation in unlicensed bands
p. 230
7.1.1
Reference sensitivity power level for NR SL-U
p. 230
7.1.2
Maximum input level for NR SL-U
p. 232
7.1.3
Adjacent Channel Selectivity for NR SL-U
p. 232
7.1.4
Blocking characteristics for NR SL-U
p. 233
7.1.4.1
In Band Blocking
p. 233
7.1.4.2
Out of Band Blocking
p. 233
7.1.4.3
Narrow Band Blocking
p. 234
7.1.5
Spurious response for NR SL-U
p. 234
7.1.6
Intermodulation characteristics for NR SL-U
p. 234
7.2
Rx requirements for inter-band con-current operation
p. 234
7.2.1
Reference sensitivity power level for inter-band con-current operation
p. 234
7.2.2
Maximum input level for inter-band con-current operation
p. 234
7.2.3
Adjacent Channel Selectivity for inter-band con-current operation
p. 234
7.2.4
Blocking characteristics for inter-band con-current operation
p. 235
7.2.5
Spurious response for inter-band con-current operation
p. 235
7.2.6
Intermodulation characteristics for inter-band con-current operation
p. 235
7.3
Rx requirements for NR SL CA operation
p. 235
7.3.1
Reference sensitivity power level for NR SL CA operation
p. 235
7.3.2
Maximum input level for NR SL CA operation
p. 235
7.3.3
Adjacent Channel Selectivity for NR SL CA operation
p. 235
7.3.4
Blocking characteristics for NR SL CA operation
p. 236
7.3.4.1
In-band blocking
p. 236
7.3.4.2
Out-of-band blocking
p. 237
7.3.5
Spurious response for NR SL CA operation
p. 237
7.3.6
Intermodulation characteristics for NR SL CA operation
p. 238
8
Co-channel coexistence between LTE Sidelink and NR Sidelink
p. 238
8.1
Configured transmitted power for V2X UE supporting co-channel coexistence with LTE SL
p. 238
8.2
Relative slot power tolerance for V2X UE supporting co-channel coexistence with LTE SL
p. 239
$
Change history
p. 240