Methods and apparatuses for selecting a synchronization block
Aspects of the present disclosure include methods, apparatuses, and computer readable media for receiving a synchronization signal block (SSB) burst set having a plurality of SSBs that are time division multiplexed, wherein a first SSB of the plurality of SSBs and a second SSB of the plurality of SSBs have different numerologies or different waveforms, selecting a SSB of the plurality of SSBs, identifying cell information associated with a cell based on the SSB of the plurality of SSBs, and establishing a connection with the cell based on the cell information.
1 . A method of wireless communication by a user equipment (UE), comprising:
obtaining at least one of flight level (FL) information or global navigation satellite system (GNSS) information;
determining whether an altitude of the UE indicated in the FL information is greater than a threshold altitude;
receiving a synchronization signal block (SSB) burst set having a plurality of SSBs that are time division multiplexed, wherein a first SSB of the plurality of SSBs and a second SSB of the plurality of SSBs have different numerologies or different waveforms;
selecting a SSB of the plurality of SSBs, wherein selecting the SSB further comprises selecting, in response to the altitude being greater than the threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix greater than a threshold cyclic prefix;
identifying cell information associated with a cell based on the SSB of the plurality of SSBs; and
establishing a connection with the cell based on the cell information.
2 . The method of claim 1 , further comprising:
determining whether a location of the UE indicated in the GNSS information is within a coastal region;
wherein selecting the SSB further comprises selecting, in response to the location being within the coastal region, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix less than a threshold cyclic prefix.
3 . The method of claim 1 , further comprising:
determining whether an altitude of the UE indicated in the FL information is greater than a first threshold altitude associated with a low altitude and less than a second threshold altitude associated with a high altitude;
wherein selecting the SSB further comprises selecting, in response to the altitude being between the first threshold altitude and the second threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix less than a threshold cyclic prefix.
4 . The method of claim 1 , further comprising:
identifying a frequency band to be searched;
wherein selecting the SSB further comprises omitting, in response to the frequency band to be searched, one or more SSBs of the plurality of SSBs not associated with the frequency band to be searched.
5 . The method of claim 1 , further comprising:
identifying a frequency band to be searched;
wherein selecting the SSB further comprises selecting, in response to the frequency band to be searched, one or more SSBs of the plurality of SSBs associated only with the frequency band to be searched.
6 . The method of claim 1 , further comprising:
identifying a first random access channel (RACH) occasion associated with a first SSB of the plurality of SSBs and a second RACH occasion associated with a second SSB of the plurality of SSBs, wherein the first RACH occasion and the second RACH occasion are different, wherein the first SSB has a first numerology or a first waveform different from a second numerology or a second waveform of the second SSB.
7 . The method of claim 1 , further comprising:
identifying a first preamble format associated with a first SSB of the plurality of SSBs and a second preamble format associated with a second SSB of the plurality of SSBs, wherein the first preamble format and the second preamble format are different, wherein the first SSB has a first numerology or a first waveform different from a second numerology or a second waveform of the second SSB.
8 . The method of claim 1 , further comprising:
identifying a first preamble format associated with a first SSB of the plurality of SSBs and a second preamble format associated with a second SSB of the plurality of SSBs, wherein the first preamble format and the second preamble format are different; and
identifying a first random access channel (RACH) occasion associated with the first SSB and a second RACH occasion associated with the second SSB, wherein the first RACH occasion and the second RACH occasion are different;
wherein the first SSB has a first numerology or a first waveform different from a second numerology or a second waveform of the second SSB.
9 . The method of claim 1 , further comprising:
transmitting a random access channel (RACH) message using a RACH occasion and a preamble format selected from a plurality of different RACH occasions and a plurality of different preamble formats based on a waveform or a numerology of the SSB selected from the plurality of SSBs.
10 . The method of claim 9 , wherein the preamble format comprises at least one of a waveform, a subcarrier spacing (SCS) and/or cyclic prefix (CP) length, or a length of a preamble sequence.
11 . The method of claim 9 , further comprising decoding remaining minimum system information associated with the SSB to identify the RACH occasion and the preamble format.
12 . The method of claim 9 , further comprising receiving configuration information including the plurality of different RACH occasions and the plurality of different preamble formats each associated with one of the different numerologies or one of the different waveforms.
13 . A user equipment (UE), comprising:
memory comprising instructions;
a transceiver; and
one or more processors operatively coupled with the memory and the transceiver, the one or more processors configured to execute instructions in the memory to:
obtain at least one of flight level (FL) information or global navigation satellite system (GNSS) information;
determine whether an altitude of the UE indicated in the FL information is greater than a threshold altitude;
receive a synchronization signal block (SSB) burst set having a plurality of SSBs that are time division multiplexed, wherein a first SSB of the plurality of SSBs and a second SSB of the plurality of SSBs have different numerologies or different waveforms;
select a SSB of the plurality of SSBs, wherein the one or more processors are further configured to select, in response to the altitude being greater than the threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix greater than a threshold cyclic prefix;
identify cell information associated with a cell based on the SSB of the plurality of SSBs; and
establish a connection with the cell based on the cell information.
14 . The UE of claim 13 , wherein the one or more processors are further configured to:
determine whether a location of the UE indicated in the GNSS information is within a coastal region;
wherein selecting the SSB further comprises selecting, in response to the location being within the coastal region, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix less than a threshold cyclic prefix.
15 . The UE of claim 13 , wherein the one or more processors are further configured to:
determine whether an altitude of the UE indicated in the FL information is greater than a first threshold altitude associated with a low altitude and less than a second threshold altitude associated with a high altitude;
wherein selecting the SSB further comprises selecting, in response to the altitude being between the first threshold altitude and the second threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix less than a threshold cyclic prefix.
16 . The UE of claim 13 , wherein the one or more processors are further configured to:
identify a frequency band to be searched;
wherein selecting the SSB further comprises omitting, in response to the frequency band to be searched, one or more SSBs of the plurality of SSBs not associated with the frequency band to be searched.
17 . The UE of claim 13 , wherein the one or more processors are further configured to:
identify a frequency band to be searched;
wherein selecting the SSB further comprises selecting, in response to the frequency band to be searched, one or more SSBs of the plurality of SSBs associated only with the frequency band to be searched.
18 . A non-transitory computer readable medium having instructions stored therein that, when executed by one or more processors of a user equipment (UE), cause the one or more processors to:
obtain at least one of flight level (FL) information or global navigation satellite system (GNSS) information;
determine whether an altitude of the UE indicated in the FL information is greater than a threshold altitude;
receive a synchronization signal block (SSB) burst set having a plurality of SSBs that are time division multiplexed, wherein a first SSB of the plurality of SSBs and a second SSB of the plurality of SSBs have different numerologies or different waveforms;
select a SSB of the plurality of SSBs, wherein selecting the SSB further comprises selecting, in response to the altitude being greater than the threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix greater than a threshold cyclic prefix;
identify cell information associated with a cell based on the SSB of the plurality of SSBs; and
establish a connection with the cell based on the cell information.
19 . A user equipment (UE), comprising:
means for obtaining at least one of flight level (FL) information or global navigation satellite system (GNSS) information;
means for determining whether an altitude of the UE indicated in the FL information is greater than a threshold altitude;
means for receiving a synchronization signal block (SSB) burst set having a plurality of SSBs that are time division multiplexed, wherein a first SSB of the plurality of SSBs and a second SSB of the plurality of SSBs have different numerologies or different waveforms;
means for selecting a SSB of the plurality of SSBs, wherein the means for selecting the SSB further comprises means for selecting, in response to the altitude being greater than the threshold altitude, one or more SSBs of the plurality of SSBs having a numerology defined by a subcarrier spacing greater than a threshold subcarrier spacing and a cyclic prefix greater than a threshold cyclic prefix;
means for identifying cell information associated with a cell based on the SSB of the plurality of SSBs; and
means for establishing a connection with the cell based on the cell information.