Techniques for managing beams in multiple frequency bands
Aspects described herein relate to communicating with a base station over multiple frequency bands using a first beam, and switching from the first beam to the second beam during a time period or based on a timing of the reference band. Other aspects relate to transmitting an indication of one or more parameters for determining a reference band of the multiple frequency bands to use as a timing reference for switching beams for communicating over the multiple frequency bands.
1. An apparatus for wireless communication, comprising:
a transceiver;
a memory configured to store instructions; and
one or more processors communicatively coupled with the memory and the transceiver, wherein the one or more processors are configured to execute the instructions to cause the apparatus to:
concurrently communicate with a base station over multiple frequency bands using a same first beam; and
switch, according to beam switching criteria, from the first beam to a second beam during a time period, wherein the time period includes one or more symbols of a limited number of symbols within a specified duration; and
drop the one or more symbols within at least one of the multiple frequency bands within the specified duration.
2. The apparatus of claim 1 , wherein the time period is within a transmission gap between uplink and downlink communications, and wherein the one or more processors are further configured to execute the instructions to cause the apparatus to report, to the base station, a receive time difference between a time a first signal is received by the apparatus in a first frequency band of the multiple frequency bands and a time a second signal is received by the apparatus in a second frequency band of the multiple frequency bands, wherein the transmission gap is set based on the receive time difference.
3. The apparatus of claim 1 , wherein the one or more symbols are for communications other than at least one of a synchronization signal block (SSB), a physical downlink control channel (PDCCH) search space, or a reference signal.
4. The apparatus of claim 1 , wherein the one or more processors are further configured to execute the instructions to cause the apparatus to receive, from the base station, an indication of the time period or one or more parameters for determining the time period.
5. A method for wireless communication by a user equipment (UE), comprising:
concurrently communicating with a base station over multiple frequency bands using a same first beam; and
switching, according to beam switching criteria, from the first beam to a second beam during a time period, wherein the time period includes one or more symbols of a limited number of symbols within a specified duration; and
drop the one or more symbols within at least one of the multiple frequency bands within the specified duration.
6. The method of claim 5 , wherein the time period is within a transmission gap between uplink and downlink communications, and further comprising reporting, to the base station, a receive time difference between a time a first signal is received by the UE in a first frequency band of the multiple frequency bands and a time a second signal is received by the UE in a second frequency band of the multiple frequency bands, wherein the transmission gap is set based on the receive time difference.
7. The method of claim 5 , wherein the one or more symbols are for communications other than at least one of a synchronization signal block (SSB), a physical downlink control channel (PDCCH) search space, or a reference signal.
8. The method of claim 5 , further comprising receiving, from the base station, an indication of the time period or one or more parameters for determining the time period.