Beamforming techniques in Wi-Fi frequency bands
Methods, systems, and devices for wireless communications are described. A first wireless device may communicate signaling with a second wireless device based on establishing a radio frequency link, the signaling indicating the first wireless device and the second wireless device are to skip performance of a beam training procedure, or indicating a selection between a first beam training procedure associated with the radio frequency link and a second beam training procedure associated with the radio frequency link. The first wireless device may then communicate one or more messages with the second wireless device via the radio frequency link using a beam, where the beam is based on whether the signaling indicates the first wireless device and the second wireless device are to skip performance of the beam training procedure, or indicates the selection between the first beam training procedure and the second beam training procedure.
1 . An apparatus for wireless communications at a first wireless device, comprising:
one or more processors;
one or more memories coupled with the one or more processors; and
instructions stored in the one or more memories and executable by the one or more processors to cause the apparatus to:
perform one or more measurements on signals received from a second wireless device via a radio frequency link;
communicate signaling with the second wireless device via the radio frequency link, the signaling indicating the first wireless device and the second wireless device are to skip performance of a beam training procedure based at least in part on the one or more measurements satisfying one or more thresholds, or indicating a selection between a first beam training procedure associated with the radio frequency link and a second beam training procedure associated with the radio frequency link, wherein the selection between the first beam training procedure and the second beam training procedure is based at least in part on the one or more measurements failing to satisfy the one or more thresholds; and
communicate one or more messages with the second wireless device via the radio frequency link using a beam, the beam being based at least in part on whether the signaling indicates the first wireless device and the second wireless device are to skip performance of the beam training procedure, or indicates the selection between the first beam training procedure and the second beam training procedure.
2 . The apparatus of claim 1 , wherein the radio frequency link is associated with a first frequency band, and the instructions are further executable by the one or more processors to cause the apparatus to:
communicate with the second wireless device via a second radio frequency link associated with a second frequency band different from the first frequency band, wherein communicating the signaling is based at least in part on position information, beam information, or both, wherein the position information, the beam information, or both, is based at least in part on communicating via the second radio frequency link.
3 . The apparatus of claim 2 , wherein the first frequency band is associated with a frequency above 7 GHZ, and wherein the second frequency band is associated with a frequency below 7 GHz.
4 . The apparatus of claim 1 , wherein the instructions are further executable by the one or more processors to cause the apparatus to:
communicate the signaling indicating the selection between the first beam training procedure and the second beam training procedure based at least in part on the first wireless device, the second wireless device, or both, previously operating in accordance with an idle state for at least a time duration.
5 . The apparatus of claim 1 , wherein the first beam training procedure comprises a beam refinement procedure without a sector-level training procedure, and wherein the second beam training procedure comprises the sector-level training procedure and the beam refinement procedure, and the instructions are further executable by the one or more processors to cause the apparatus to:
perform one of the first beam training procedure or the second beam training procedure in accordance with the signaling indicating the selection between the first beam training procedure and the second beam training procedure, wherein the beam used for communicating the one or more messages via the radio frequency link is selected based at least in part on performing the first beam training procedure or the second beam training procedure.
6 . The apparatus of claim 5 , wherein the instructions to perform the second beam training procedure are executable by the one or more processors to cause the apparatus to:
receive, from the second wireless device during one or more beacon transmit intervals associated with the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated within a plurality of sectors to identify a first sector of the plurality of sectors; and
receive, from the second wireless device during one or more service periods associated with the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated within the first sector, wherein the beam is selected from the plurality of narrow beams.
7 . The apparatus of claim 5 , wherein the instructions to perform the second beam training procedure are executable by the one or more processors to cause the apparatus to:
transmit, to the second wireless device during one or more service periods associated with the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated within a sector of a plurality of sectors to identify a first sector of the plurality of sectors; and
transmit, to the second wireless device during one or more additional service periods associated with the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated within the first sector, wherein the beam is selected from the plurality of narrow beams.
8 . The apparatus of claim 5 , wherein the first wireless device is associated with a plurality of narrow beams that are spatially separated across a plurality of sectors, and wherein the instructions to perform the first beam training procedure are executable by the one or more processors to cause the apparatus to:
transmit, to the second wireless device as part of the beam refinement procedure, a plurality of signals using a subset of narrow beams of the plurality of narrow beams that are spatially separated across a sector of the plurality of sectors, wherein the beam is selected from the subset of narrow beams.
9 . The apparatus of claim 5 , wherein the instructions to perform the second beam training procedure are executable by the one or more processors to cause the apparatus to:
receive, from the second wireless device as part of the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated across a plurality of sectors to identify a first sector of the plurality of sectors; and
receive, from the second wireless device as part of the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated across the first sector, wherein the beam is selected from the plurality of narrow beams.
10 . The apparatus of claim 9 , wherein the instructions are further executable by the one or more processors to cause the apparatus to:
communicate, with the second wireless device, a message indicating the first sector of the plurality of sectors based at least in part on transmitting the first plurality of signals as part of the sector-level training procedure, wherein transmitting the second plurality of signals as part of the beam refinement procedure is based at least in part on the message indicating the first sector.
11 . The apparatus of claim 1 , wherein the instructions are further executable by the one or more processors to cause the apparatus to:
communicate, with the second wireless device, a request for one of the first beam training procedure or the second beam training procedure, wherein the signaling indicates the selection between the first beam training procedure and the second beam training procedure based at least in part on the request.
12 . The apparatus of claim 1 , wherein the instructions are further executable by the one or more processors to cause the apparatus to:
communicate the signaling based at least in part on a mobility state associated with the first wireless device, the second wireless device, or both.
13 . The apparatus of claim 1 ,
wherein the first wireless device comprises an access point (AP), a first multi-link device, or both, and wherein the second wireless device comprises a station (STA), a second multi-link device, or both, or
wherein the first wireless device comprises the STA, the first multi-link device, or both, and wherein the second wireless device comprises the AP, the second multi-link device, or both.
14 . A method for wireless communications at a first wireless device, comprising:
performing one or more measurements on signals received from a second wireless device via a radio frequency link;
communicating signaling with the second wireless device via the radio frequency link, the signaling indicating the first wireless device and the second wireless device are to skip performance of a beam training procedure based at least in part on the one or more measurements satisfying one or more thresholds, or indicating a selection between a first beam training procedure associated with the radio frequency link and a second beam training procedure associated with the radio frequency link, wherein the selection between the first beam training procedure and the second beam training procedure is based at least in part on the one or more measurements failing to satisfy the one or more thresholds; and
communicating one or more messages with the second wireless device via the radio frequency link using a beam, the beam being based at least in part on whether the signaling indicates the first wireless device and the second wireless device are to skip performance of the beam training procedure, or indicates the selection between the first beam training procedure and the second beam training procedure.
15 . The method of claim 14 , wherein the radio frequency link is associated with a first frequency band, the method further comprising:
communicating with the second wireless device via a second radio frequency link associated with a second frequency band different from the first frequency band, wherein communicating the signaling is based at least in part on position information, beam information, or both, wherein the position information, the beam information, or both, is based at least in part on communicating via the second radio frequency link.
16 . The method of claim 15 , wherein the first frequency band is associated with a frequency above 7 GHZ, and wherein the second frequency band is associated with a frequency below 7 GHz.
17 . The method of claim 14 , further comprising:
communicating the signaling indicating the selection between the first beam training procedure and the second beam training procedure based at least in part on the first wireless device, the second wireless device, or both, previously operating in accordance with an idle state for at least a time duration.
18 . The method of claim 14 , wherein the first beam training procedure comprises a beam refinement procedure without a sector-level training procedure, and wherein the second beam training procedure comprises the sector-level training procedure and the beam refinement procedure, the method further comprising:
performing one of the first beam training procedure or the second beam training procedure in accordance with the signaling indicating the selection between the first beam training procedure and the second beam training procedure, wherein the beam used for communicating the one or more messages via the radio frequency link is selected based at least in part on performing the first beam training procedure or the second beam training procedure.
19 . The method of claim 18 , wherein performing the second beam training procedure comprises:
receiving, from the second wireless device during one or more beacon transmit intervals associated with the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated within a plurality of sectors to identify a first sector of the plurality of sectors; and
receiving, from the second wireless device during one or more service periods associated with the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated within the first sector, wherein the beam is selected from the plurality of narrow beams.
20 . The method of claim 18 , wherein performing the second beam training procedure comprises:
transmitting, to the second wireless device during one or more service periods associated with the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated within a sector of a plurality of sectors to identify a first sector of the plurality of sectors; and
transmitting, to the second wireless device during one or more additional service periods associated with the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated within the first sector, wherein the beam is selected from the plurality of narrow beams.
21 . The method of claim 18 , wherein the first wireless device is associated with a plurality of narrow beams that are spatially separated across a plurality of sectors, and wherein performing the first beam training procedure comprises:
transmitting, to the second wireless device as part of the beam refinement procedure, a plurality of signals using a subset of narrow beams of the plurality of narrow beams that are spatially separated across a sector of the plurality of sectors, wherein the beam is selected from the subset of narrow beams.
22 . The method of claim 18 , and wherein performing the second beam training procedure comprises:
receiving, from the second wireless device as part of the sector-level training procedure, a first plurality of signals using a plurality of wide beams that are spatially separated across a plurality of sectors to identify a first sector of the plurality of sectors; and
receiving, from the second wireless device as part of the beam refinement procedure, a second plurality of signals using a plurality of narrow beams that are spatially separated across the first sector, wherein the beam is selected from the plurality of narrow beams.
23 . The method of claim 22 , further comprising:
communicating, with the second wireless device, a message indicating the first sector of the plurality of sectors based at least in part on transmitting the first plurality of signals as part of the sector-level training procedure, wherein transmitting the second plurality of signals as part of the beam refinement procedure is based at least in part on the message indicating the first sector.
24 . The method of claim 14 , further comprising:
communicating, with the second wireless device, a request for one of the first beam training procedure or the second beam training procedure, wherein the signaling indicates the selection between the first beam training procedure and the second beam training procedure based at least in part on the request.
25 . The method of claim 14 , further comprising:
communicating the signaling based at least in part on a mobility state associated with the first wireless device, the second wireless device, or both.
26 . The method of claim 14 ,
wherein the first wireless device comprises an access point (AP), a first multi-link device, or both, and wherein the second wireless device comprises a station (STA), a second multi-link device, or both, or
wherein the first wireless device comprises the STA, the first multi-link device, or both, and wherein the second wireless device comprises the AP, the second multi-link device, or both.
27 . An apparatus for wireless communications at a first wireless device, comprising:
means for performing one or more measurements on signals received from a second wireless device via a radio frequency link;
means for communicating signaling with the second wireless device via the radio frequency link, the signaling indicating the first wireless device and the second wireless device are to skip performance of a beam training procedure based at least in part on the one or more measurements satisfying one or more thresholds, or indicating a selection between a first beam training procedure associated with the radio frequency link and a second beam training procedure associated with the radio frequency link, wherein the selection between the first beam training procedure and the second beam training procedure is based at least in part on the one or more measurements failing to satisfy the one or more thresholds; and
means for communicating one or more messages with the second wireless device via the radio frequency link using a beam, the beam being based at least in part on whether the signaling indicates the first wireless device and the second wireless device are to skip performance of the beam training procedure, or indicates the selection between the first beam training procedure and the second beam training procedure.
28 . A non-transitory computer-readable medium storing code for wireless communications at a first wireless device, the code comprising instructions executable by a processor to:
perform one or more measurements on signals received from a second wireless device via a radio frequency link;
communicate signaling with the second wireless device via the radio frequency link, the signaling indicating the first wireless device and the second wireless device are to skip performance of a beam training procedure based at least in part on the one or more measurements satisfying one or more thresholds, or indicating a selection between a first beam training procedure associated with the radio frequency link and a second beam training procedure associated with the radio frequency link, wherein the selection between the first beam training procedure and the second beam training procedure is based at least in part on the one or more measurements failing to satisfy the one or more thresholds; and
communicate one or more messages with the second wireless device via the radio frequency link using a beam, the beam being based at least in part on whether the signaling indicates the first wireless device and the second wireless device are to skip performance of the beam training procedure, or indicates the selection between the first beam training procedure and the second beam training procedure.