Time division multiplexing of synchronization channels
The apparatus may be a base station. The apparatus processes a first group of synchronization signals. The apparatus processes a second group of synchronization signals. The apparatus performs a first transmission by transmitting the processed first group of the synchronization signals in a first synchronization subframe. The apparatus performs a second transmission by transmitting the processed second group of the synchronization signals in a second synchronization subframe.
1. A method of wireless communication at a user equipment (UE), comprising:
receiving, based on a first timing, a plurality of transmissions of a first synchronization signal (SS) group in multiple beam directions, the first SS group comprising multiple signals that are multiplexed based on a combination of time division multiplexing and frequency division multiplexing, the multiple signals including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), a reference signal, and a physical broadcast channel (PBCH) signal, wherein the PSS is received in the first SS group prior to the PBCH signal and the reference signal, and wherein the SSS is received after the PBCH signal and the reference signal;
performing a first type of processing on the first SS group, the first type of processing including performing a beam measurement;
receiving, based on a second timing, a second SS group; and
performing a second type of processing on the second SS group, wherein the second type of processing is different than the first type of processing.
2. The method of claim 1 , wherein the PBCH signal and the reference signal are frequency division multiplexed in multiple symbols of the first SS group, the multiple symbols separated by at least one symbol comprising the PSS or the SSS.
3. The method of claim 2 , wherein the SSS is frequency division multiplexed with another signal in the first SS group.
4. The method of claim 1 , wherein the plurality of transmissions of the first SS group are received in a subframe.
5. The method of claim 1 , wherein each of the plurality of transmissions of the first SS group are associated with a different beam identifier (ID).
6. The method of claim 1 , further comprising:
selecting a beam from one of the multiple beam directions for communication with a base station based on reception the first SS group.
7. The method of claim 1 , wherein the first type of processing includes receiving and processing the reference signal to perform the beam measurement, and the second type of processing includes receiving and decoding an additional PBCH signal, which is comprised in the second SS group.
8. The method of claim 1 , wherein the reference signal is a beam reference signal.
9. The method of claim 1 , wherein the second SS group includes the PBCH signal and does not include the reference signal.
10. The method of claim 1 , wherein each of the multiple beam directions are associated with a different physical random access channel (PRACH) or scheduling request opportunity, the method further comprising:
transmitting a PRACH or a scheduling request based on an association between the PRACH or the scheduling request opportunity and a corresponding beam.
11. The method of claim 10 , further comprising:
receiving, from a base station, information associating the corresponding beam with the PRACH or the scheduling request opportunity.
12. A method of wireless communication at a base station, comprising:
transmitting, based on a first timing, a plurality of transmissions of a first synchronization signal (SS) group in multiple beam directions for a first type of processing including beam measurement, the first SS group comprising multiple signals that are multiplexed based on a combination of time division multiplexing and frequency division multiplexing, the multiple signals including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), a reference signal, and a physical broadcast channel (PBCH) signal, wherein the PSS is transmitted in the first SS group prior to the PBCH signal and the reference signal, and wherein the SSS is transmitted after the PBCH signal and the reference signal; and
transmitting, based on a second timing, a second SS group for a second type of processing on the second SS group that is different than the first type of processing.
13. The method of claim 12 , further comprising:
frequency division multiplexing the PBCH signal and the reference signal in multiple symbols of the first SS group, the multiple symbols separated by at least one symbol comprising the PSS or the SSS.
14. The method of claim 13 , further comprising:
frequency division multiplexing the SSS with another signal in the first SS group.
15. The method of claim 12 , wherein the plurality of transmissions of the first SS group are transmitted in a subframe.
16. The method of claim 12 , wherein each of the plurality of transmissions of the first SS group are associated with a different beam identifier (ID).
17. The method of claim 12 , wherein the second SS group includes the PBCH signal and does not include the reference signal.
18. The method of claim 12 , wherein each of the multiple beam directions are associated with a different physical random access channel (PRACH) or scheduling request opportunity, the method further comprising:
receiving a PRACH or a scheduling request from a user equipment (UE) based on an association between the PRACH or the scheduling request opportunity and a corresponding beam.
19. The method of claim 18 , further comprising:
transmitting information associating the corresponding beam with the PRACH or the scheduling request opportunity.
20. An apparatus for wireless communication at a user equipment (UE), comprising:
a memory; and
at least one processor coupled to the memory, the memory and the at least one processor configured to:
receive, based on a first timing, a plurality of transmissions of a first synchronization signal (SS) group in multiple beam directions, the first SS group comprising multiple signals that are multiplexed based on a combination of time division multiplexing and frequency division multiplexing, the multiple signals including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), a reference signal, and a physical broadcast channel (PBCH) signal, wherein the at least one processor is configured to receive the PSS in the first SS group prior to the PBCH signal and the reference signal, and to receive the SSS after the PBCH signal and the reference signal;
perform a first type of processing on the first SS group, the first type of processing including performing a beam measurement;
receive, based on a second timing, a second SS group; and
perform a second type of processing on the second SS group, wherein the second type of processing is different than the first type of processing.
21. The apparatus of claim 20 , wherein the PBCH signal and the reference signal are frequency division multiplexed in multiple symbols of the first SS group, the multiple symbols separated by at least one symbol comprising the PSS or the SSS.
22. The apparatus of claim 21 , wherein the SSS is frequency division multiplexed with another signal in the first SS group.
23. The apparatus of claim 20 , wherein the plurality of transmissions of the first SS group are received in a subframe.
24. The apparatus of claim 20 , wherein each of the plurality of transmissions of the first SS group are associated with a different beam identifier (ID).
25. The apparatus of claim 20 , wherein the memory and the at least one processor are further configured to:
select a beam from one of the multiple beam directions for communication with a base station based on reception the first SS group.
26. An apparatus for wireless communication at a base station, comprising:
a memory; and
at least one processor coupled to the memory, the memory and the at least one processor configured to:
transmit, based on a first timing, a plurality of transmissions of a first synchronization signal (SS) group in multiple beam directions for a first type of processing including beam measurement, the first SS group comprising multiple signals that are multiplexed based on a combination of time division multiplexing and frequency division multiplexing, the multiple signals including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), a reference signal, and a physical broadcast channel (PBCH) signal, wherein the at least one processor is configured to transmit the PSS in the first SS group prior to the PBCH and the reference signal, and to transmit the SSS after the PBCH and the reference signal; and
transmit, based on a second timing, a second SS group for a second type of processing on the second SS group that is different than the first type of processing.
27. The apparatus of claim 26 , wherein the memory and the at least one processor are further configured to:
frequency division multiplex the PBCH signal and the reference signal in multiple symbols of the first SS group, the multiple symbols separated by at least one symbol comprising the PSS or the SSS.
28. The apparatus of claim 27 , wherein the memory and the at least one processor are further configured to:
frequency division multiplex the SSS with another signal in the first SS group.