IP Library › Granted Patent US 12,471,064
Granted Patent B2
US 12,471,064 · App. 17/674,647 · Granted Nov 11, 2025

Feedback prioritization for sidelink communications

Inventors: Xiaojie Wang (Hillsborough, NJ); Xiaoxia Zhang (San Diego, CA); Sony Akkarakaran (Poway, CA)
Assignee: QUALCOMM Incorporated
H04W72/02H04L1/1812H04L5/0044H04W72/0446H04W72/56
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Quick Facts
Patent No.
US 12,471,064
App. No.
17/674,647
Granted
Nov 11, 2025
Kind
B2
Abstract

Disclosed are systems and techniques for wireless communications. In one example, a method for wireless communications performed at a user equipment (UE) can include receiving one or more sidelink communications including a plurality of data packets. In some aspects, the method can include determining a respective priority level associated with each data packet of the plurality of data packets. In some examples, the method can include transmitting at least one Physical Sidelink Feedback Channel (PSFCH) message using a PSFCH format, the PSFCH format including a plurality of Hybrid Automatic Repeat Request (HARQ) responses corresponding to at least a portion of the plurality of data packets, wherein the portion of the plurality of data packets are arranged based on the respective priority level associated with each data packet of the plurality of data packets.

Claims (49)

1 . An apparatus for wireless communications, comprising:

at least one memory comprising instructions; and

at least one processor configured to execute the instructions and cause the apparatus to:

receive one or more sidelink communications including a plurality of data packets;

determine a respective priority level associated with each data packet of the plurality of data packets;

transmit at least one Physical Sidelink Feedback Channel (PSFCH) message using a PSFCH format, the PSFCH message including a plurality of Hybrid Automatic Repeat Request (HARQ) responses corresponding to at least a portion of the plurality of data packets selected based on the respective priority level associated with each data packet of the plurality of data packets, wherein the PSFCH format is selected from a plurality of PSFCH formats based on a maximum payload size of the PSFCH format and a payload size of the plurality of HARQ responses, each PSFCH format of the plurality of PSFCH formats associated with a respective maximum payload size; and

select the PSFCH format based on a corresponding payload size, a number of the plurality of HARQ responses, and a corresponding number of symbols of the PSFCH format.

2 . The apparatus of claim 1 , wherein the at least one processor is further configured to cause the apparatus to:

multiplex the plurality of HARQ responses in the PSFCH format based on a HARQ process number.

3 . The apparatus of claim 1 , wherein the at least one processor is further configured to cause the apparatus to:

determine that a HARQ codebook size exceeds the maximum payload size of the PSFCH format; and

discard one or more HARQ responses corresponding to one or more data packets from the plurality of data packets based on at least one of a HARQ process number or a reception time of a corresponding Physical Sidelink Shared Channel (PSSCH) reception.

4 . The apparatus of claim 1 , wherein a first portion of the plurality of HARQ responses is associated with a first HARQ codebook and a second portion of the plurality of HARQ responses is associated with a second HARQ codebook.

5 . The apparatus of claim 4 , wherein the first portion of the plurality of HARQ responses is coded separately from the second portion of the plurality of HARQ responses.

6 . The apparatus of claim 1 , wherein the at least one PSFCH message includes a first PSFCH message and a second PSFCH message, wherein the first PSFCH message corresponds to a first HARQ codebook and the second PSFCH message corresponds to a second HARQ codebook.

7 . The apparatus of claim 6 , wherein the first PSFCH message and the second PSFCH message are transmitted using a same transmit power.

8 . The apparatus of claim 6 , wherein the first PSFCH message and the second PSFCH message have a same time duration.

9 . The apparatus of claim 6 , wherein the first PSFCH message and the second PSFCH message are transmitted within a threshold number of resource blocks.

10 . The apparatus of claim 1 , wherein the maximum payload size of the PSFCH format is larger than the respective maximum payload size associated with non-selected PSFCH formats of the plurality of PSFCH formats.

11 . The apparatus of claim 1 , wherein the respective maximum payload size associated with each PSFCH format of the plurality of PSFCH formats is based on a quantity of resource blocks (RBs) and a quantity of symbols included in each PSFCH format.

12 . The apparatus of claim 1 , wherein:

each PSFCH format of the plurality of PSFCH formats is associated with a respective time metric corresponding to a quantity of symbols included within the respective maximum payload size associated with each PSFCH format; and

the PSFCH format is selected from the plurality of PSFCH formats based on the PSFCH format being prioritized over non-selected PSFCH formats of the plurality of PSFCH formats according to the respective time metric.

13 . A method for wireless communications, comprising:

receiving, by a user equipment (UE), one or more sidelink communications including a plurality of data packets;

determining a respective priority level associated with each data packet of the plurality of data packets; and

transmitting at least one Physical Sidelink Feedback Channel (PSFCH) message using a PSFCH format, the PSFCH message including a plurality of Hybrid Automatic Repeat Request (HARQ) responses corresponding to at least a portion of the plurality of data packets selected based on the respective priority level associated with each data packet of the plurality of data packets, wherein the PSFCH format is selected from a plurality of PSFCH formats based on a maximum payload size of the PSFCH format and a payload size of the plurality of HARQ responses, each PSFCH format of the plurality of PSFCH formats associated with a respective maximum payload size; and

selecting the PSFCH format based on a corresponding payload size, a number of the plurality of HARQ responses, and a corresponding number of symbols of the PSFCH format.

14 . The method of claim 13 , further comprising:

multiplexing the plurality of HARQ responses in the PSFCH format based on a HARQ process number.

15 . The method of claim 13 , further comprising:

determining that a HARQ codebook size exceeds the maximum payload size of the PSFCH format; and

discarding one or more HARQ responses corresponding to one or more data packets from the plurality of data packets based on at least one of a HARQ process number or a reception time of a corresponding Physical Sidelink Shared Channel (PSSCH) reception.

16 . The method of claim 13 , wherein a first portion of the plurality of HARQ responses is associated with a first HAR Q codebook and a second portion of the plurality of HARQ responses is associated with a second HARQ codebook.

17 . The method of claim 16 , wherein the first portion of the plurality of HARQ responses is coded separately from the second portion of the plurality of HARQ responses.

18 . The method of claim 13 , wherein the at least one PSFCH message includes a first PSFCH message and a second PSFCH message, wherein the first PSFCH message corresponds to a first HARQ codebook and the second PSFCH message corresponds to a second HARQ codebook.

19 . The method of claim 18 , wherein the first PSFCH message and the second PSFCH message are transmitted using a same transmit power.

20 . The method of claim 18 , wherein the first PSFCH message and the second PSFCH message have a same time duration.

21 . The method of claim 18 , wherein the first PSFCH message and the second PSFCH message are transmitted within a threshold number of resource blocks.

22 . A non-transitory computer-readable medium having stored thereon instructions that, when executed by at least one processor, cause the at least one processor to:

receive one or more sidelink communications including a plurality of data packets;

determine a respective priority level associated with each data packet of the plurality of data packets; and

output for transmission at least one Physical Sidelink Feedback Channel (PSFCH) message using a PSFCH format, the PSFCH message including a plurality of Hybrid Automatic Repeat Request (HARQ) responses corresponding to at least a portion of the plurality of data packets selected based on the respective priority level associated with each data packet of the plurality of data packets, wherein the PSFCH format is selected from a plurality of PSFCH formats based on a maximum payload size of the PSFCH format and a payload size of the plurality of HARQ responses, each PSFCH format of the plurality of PSFCH formats associated with a respective maximum payload size; and

select the PSFCH format based on a corresponding payload size, a number of the plurality of HARQ responses, and a corresponding number of symbols of the PSFCH format.

23 . The non-transitory computer-readable medium of claim 22 , wherein the instructions that, when executed by the at least one processor, cause the at least one processor to:

multiplex the plurality of HARQ responses in the PSFCH format based on a HARQ process number.

24 . The non-transitory computer-readable medium of claim 22 , wherein the instructions that, when executed by the at least one processor, cause the at least one processor to:

determine that a HARQ codebook size exceeds the maximum payload size of the PSFCH format; and

discard one or more HARQ responses corresponding to one or more data packets from the plurality of data packets based on at least one of a HARQ process number or a reception time of a corresponding Physical Sidelink Shared Channel (PSSCH) reception.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2022
From: WANG, XIAOJIE; ZHANG, XIAOXIA; AKKARAKARAN, SONY
To: QUALCOMM INCORPORATED
Reel/Frame 059136/0332 →
Continuity (1)
Related Publication 20230262659A1 · Aug 17, 2023
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