Antenna selection for sounding reference signal antenna switching
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may select an antenna for transmitting a New Radio sounding reference signal (SRS) such that antenna resource conflicts with receiving an LTE cell-specific reference signal are minimized based at least in part on an antenna resource configuration. The UE may transmit the SRS on the selected antenna. Numerous other aspects are described.
1. A method of wireless communication performed at a user equipment (UE), comprising:
selecting, from among antennas specified in an antenna resource configuration of the UE, an antenna associated with a least number of one or more Long Term Evolution (LTE) receive chains being blanked if the selected antenna is used for transmission of a New Radio (NR) sounding reference signal (SRS); and
transmitting the NR SRS on the selected antenna.
2. The method of claim 1 , wherein the antenna is selected based on at least one of a NR SRS transmission schedule or an LTE CRS reception schedule.
3. The method of claim 1 , wherein selecting the antenna comprises selecting the antenna while operating in a NR dual connectivity mode in an evolved universal terrestrial radio access network.
4. A method of wireless communication performed at a user equipment (UE), comprising:
selecting an antenna for receiving a Long Term Evolution (LTE) communication on a physical downlink shared channel (PDSCH) according to a periodic rotation of antennas specified in an antenna resource configuration that involves New Radio (NR) sounding reference signal (SRS) transmission,
wherein the periodic rotation is configured based on the antenna resource configuration; and
receiving the LTE communication on the PDSCH via the selected antenna.
5. The method of claim 4 , wherein the selection of the antenna according to the periodic rotation is based at least in part on an amount of NR SRS transmission, with respect to overall data transmission, satisfying a threshold.
6. The method of claim 4 , wherein the selection of the antenna according to the periodic rotation is based at least in part on when two or more receive chains of the antenna resource configuration have antenna resource conflicts with receiving the LTE communication on the PDSCH.
7. The method of claim 4 , wherein the selection of the antenna according to the periodic rotation is based at least in part on antenna switching diversity.
8. The method of claim 4 , further comprising mapping layers to antennas such that antennas that conflict with receiving the LTE communication on the PDSCH do not belong to a same layer.
9. The method of claim 8 , wherein mapping the layers includes:
identifying two separate antennas that both conflict with receiving the LTE communication on the PDSCH; and
mapping the two separate antennas to different layers of LTE.
10. The method of claim 4 , wherein selecting the antenna includes selecting the antenna while operating in a NR dual connectivity mode in an evolved universal terrestrial access network.
11. A user equipment (UE), comprising:
a memory comprising instructions;
one or more processors configured to execute the instructions and cause the UE to:
select, from among antennas specified in an antenna resource configuration of the UE, an antenna associated with a least number of one or more Long Term Evolution (LTE) receive chains being blanked if the selected antenna is used for transmission of a New Radio (NR) sounding reference signal (SRS); and
a transceiver configured to transmit the NR SRS on the selected antenna.
12. The UE of claim 11 , wherein the one or more processors, when selecting the antenna, are configured to select the antenna while operating in a NR dual connectivity mode in an evolved universal terrestrial radio access network.
13. The UE of claim 11 , wherein the antenna is selected based on at least one of a NR SRS transmission schedule or an LTE CRS reception schedule.
14. A user equipment (UE), comprising:
a memory comprising instructions;
one or more processors configured to execute the instructions and cause the UE to:
select an antenna for receiving a Long Term Evolution (LTE) communication on a physical downlink shared channel (PDSCH) according to a periodic rotation of antennas specified in an antenna resource configuration that involves New Radio (NR) sounding reference signal (SRS) transmission,
wherein the periodic rotation is configured based on the antenna resource configuration; and
a transceiver configured to receive the LTE communication on the PDSCH via the selected antenna.
15. The UE of claim 14 , wherein the one or more processors are configured to select the antenna according to the periodic rotation based at least in part on an amount of SRS, with respect to overall data transmission, satisfying a threshold.
16. The UE of claim 14 , wherein the one or more processors are configured to select the antenna according to the periodic rotation based at least in part on when two or more receive chains of the antenna resource configuration have antenna resource conflicts with receiving the LTE communication on the PDSCH.
17. The UE of claim 14 , wherein the one or more processors are configured to select the antenna according to the periodic rotation based at least in part in antenna switching diversity.
18. The UE of claim 14 , wherein the one or more processors are further configured to cause the UE to map layers to antennas such that antennas that conflict with receiving the LTE communication on the PDSCH do not belong to a same layer.
19. The UE of claim 18 , wherein the one or more processors, when mapping the layers, are configured to:
identify two separate antennas that both conflict with receiving the LTE communication on the PDSCH; and
map the two separate antennas to different.
20. The UE of claim 14 , wherein the one or more processors, when selecting the antenna, are configured to select the antenna while operating in a NR dual connectivity mode in an evolved universal terrestrial access network.