IP Library Granted Patent US 12,167,439
Granted Patent B2
US 12,167,439 · App. 17/754,010 · Granted Dec 10, 2024

Systems and methods for handling sidelink feedback signaling

Inventors: Hui Guo (Beijing, CN); Sudhir Kumar Baghel (Fremont, CA); Tien Viet Nguyen (Bridgewater, NJ)
Assignee: QUALCOMM Incorporated
H04W72/56H04L1/1812H04W72/0446H04W72/0453H04W92/18
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Quick Facts
Patent No.
US 12,167,439
App. No.
17/754,010
Granted
Dec 10, 2024
Kind
B2
Abstract

Techniques for handling sidelink feedback signaling in situations where collisions would otherwise be experienced in a network communication link are shown and described. For example, sidelink feedback signaling handling techniques may provide for collision handling when sidelink HARQ is to be simultaneously transmitted with network communication radio interface uplink channel information (e.g., Uu HARQ, SR, CSI, etc.) on one or more Uu channel (e.g., PUSCH, PUSCH, etc.). In operation of sidelink feedback handling, a transmitter or intermediary UE of a sidelink communication link may decide whether and how to forward the sidelink HARQ to a corresponding base station. Other aspects and features are also claimed and described.

Claims (60)

1. A method of wireless communication, comprising:

receiving, by a user equipment (UE) operating as an intermediary UE of a sidelink communication link, sidelink feedback signaling from a UE operating as a sidelinked UE of the sidelink communication link, wherein the sidelink feedback signaling comprises a sidelink hybrid automatic repeat request (HARQ) response; and

implementing, by the intermediary UE, sidelink feedback signaling processing avoiding an impending collision with respect to forwarding the sidelink feedback signaling to a base station over a network communication link and other uplink signaling to the base station over the network communication link, wherein the other uplink signaling comprises a base station and intermediary UE radio interface HARQ response for the intermediary UE, and wherein the implementing sidelink feedback signaling processing drops one of the sidelink feedback signaling or the other uplink signaling to communicate the other one of the sidelink feedback signaling or the other uplink signaling.

2. The method of claim 1 , wherein the implementing sidelink feedback signaling processing comprises:

identifying an overlap in an allocation of at least a time or frequency resource for use by the sidelink feedback signaling and the other uplink signaling as the impending collision with respect to forwarding the sidelink feedback signaling.

3. The method of claim 1 , wherein the implementing sidelink feedback signaling processing comprises:

determining to drop or communicate the sidelink feedback signaling based at least in part on a priority based sidelink feedback signaling rule implemented by the intermediary UE.

4. The method of claim 1 , wherein the implementing sidelink feedback signaling processing comprises:

determining to drop or communicate the sidelink feedback signaling based at least in part on a priority between the sidelink feedback signaling and at least a portion of the other uplink signaling.

5. The method of claim 4 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on an index value associated with the other uplink signaling.

6. The method of claim 4 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on a priority value associated with the sidelink feedback signaling.

7. The method of claim 6 , wherein the priority value associated with the sidelink feedback signaling comprises a priority value of a sidelink transmission corresponding to the sidelink feedback signaling.

8. The method of claim 7 , wherein the priority value of the sidelink transmission is based at least in part on a sidelink transmission priority selected from the group consisting of:

a transmit block priority provided for a transmit block of the sidelink transmission;

a transmit block size priority of a transmit block of the sidelink transmission; and

a sidelink data retransmission priority of the sidelink transmission.

9. The method of claim 1 , further comprising:

identifying the impending collision with respect to forwarding the sidelink feedback signaling and the other uplink signaling from the intermediary UE, wherein the implementing sidelink feedback signaling processing comprises determining to drop the one of the sidelink feedback signaling or the other uplink signaling in association with the identifying the impending collision.

10. An apparatus configured for wireless communication, comprising:

means for a user equipment (UE) operating as an intermediary UE of a sidelink communication link receiving sidelink feedback signaling from a UE operating as a sidelinked UE of the sidelink communication link, wherein the sidelink feedback signaling comprises a sidelink hybrid automatic repeat request (HARQ) response; and

means for the intermediary UE implementing sidelink feedback signaling processing avoiding an impending collision with respect to forwarding the sidelink feedback signaling to a base station over a network communication link and other uplink signaling to the base station over the network communication link, wherein the other uplink signaling comprises a base station and intermediary UE radio interface HARQ response for the intermediary UE, and wherein the implementing sidelink feedback signaling processing drops one of the sidelink feedback signaling or the other uplink signaling to communicate the other one of the sidelink feedback signaling or the other uplink signaling.

11. The apparatus of claim 10 , wherein the means for the intermediary UE implementing sidelink feedback signaling processing comprises:

means for identifying an overlap in an allocation of at least a time or frequency resource for use by the sidelink feedback signaling and the other uplink signaling as the impending collision with respect to forwarding the sidelink feedback signaling.

12. The apparatus of claim 10 , wherein the means for the intermediary UE implementing sidelink feedback signaling processing comprises:

means for determining to drop or communicate the sidelink feedback signaling based at least in part on a priority based sidelink feedback signaling rule implemented by the intermediary UE.

13. The apparatus of claim 10 , wherein the means for the intermediary UE implementing sidelink feedback signaling processing comprises:

means for determining to drop or communicate the sidelink feedback signaling based at least in part on a priority between the sidelink feedback signaling and at least a portion of the other uplink signaling.

14. The apparatus of claim 13 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on an index value associated with the other uplink signaling or is based at least in part on a priority value associated with the sidelink feedback signaling.

15. The apparatus of claim 14 , wherein the priority value associated with the sidelink feedback signaling comprises a priority value of a sidelink transmission corresponding to the sidelink feedback signaling.

16. A non-transitory computer-readable medium having program code for wireless communication recorded thereon, the program code comprising:

program code executable by a computer for causing the computer to

receive, by a user equipment (UE) operating as an intermediary UE of a sidelink communication link, sidelink feedback signaling from a UE operating as a sidelinked UE of the sidelink communication link, wherein the sidelink feedback signaling comprises a sidelink hybrid automatic repeat request (HARQ) response; and

implement, by the intermediary UE, sidelink feedback signaling processing avoiding an impending collision with respect to forwarding the sidelink feedback signaling to a base station over a network communication link and other uplink signaling to the base station over the network communication link, wherein the other uplink signaling comprises a base station and intermediary UE radio interface HARQ response for the intermediary UE, and wherein implementing sidelink feedback signaling processing drops one of the sidelink feedback signaling or the other uplink signaling to communicate the other one of the sidelink feedback signaling or the other uplink signaling.

17. The non-transitory computer-readable medium of claim 16 , wherein the program code for causing the computer to implement sidelink feedback signaling processing comprises program code for causing the computer to:

identify an overlap in an allocation of at least a time or frequency resource for use by the sidelink feedback signaling and the other uplink signaling as the impending collision with respect to forwarding the sidelink feedback signaling.

18. The non-transitory computer-readable medium of claim 16 , wherein the program code for causing the computer to implement sidelink feedback signaling processing comprises program code for causing the computer to:

determine to drop or communicate the sidelink feedback signaling based at least in part on a priority based sidelink feedback signaling rule implemented by the intermediary UE.

19. The non-transitory computer-readable medium of claim 16 , wherein the program code for causing the computer to implement sidelink feedback signaling processing comprises program code for causing the computer to:

determine to drop or communicate the sidelink feedback signaling based at least in part on a priority between the sidelink feedback signaling and at least a portion of the other uplink signaling.

20. The non-transitory computer-readable medium of claim 19 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on an index value associated with the other uplink signaling or is based at least in part on a priority value associated with the sidelink feedback signaling.

21. The non-transitory computer-readable medium of claim 20 , wherein the priority value associated with the sidelink feedback signaling comprises a priority value of a sidelink transmission corresponding to the sidelink feedback signaling.

22. An apparatus configured for wireless communication, the apparatus comprising:

a processing system that includes at least one processor and memory coupled with the at least one processor, wherein the processing system is configured to cause the apparatus:

to receive, by a user equipment (UE) operating as an intermediary UE of a sidelink communication link, sidelink feedback signaling from a UE operating as a sidelinked UE of the sidelink communication link, wherein the sidelink feedback signaling comprises a sidelink hybrid automatic repeat request (HARQ) response; and

to implement, by the intermediary UE, sidelink feedback signaling processing avoiding an impending collision with respect to forwarding the sidelink feedback signaling to a base station over a network communication link and other uplink signaling to the base station over the network communication link, wherein the other uplink signaling comprises a base station and intermediary UE radio interface HARQ response for the intermediary UE, and wherein implementing sidelink feedback signaling processing drops one of the sidelink feedback signaling or the other uplink signaling to communicate the other one of the sidelink feedback signaling or the other uplink signaling.

23. The apparatus of claim 22 , wherein the processing system configured to cause the apparatus to implement sidelink feedback signaling processing is configured to cause the apparatus to:

identify an overlap in an allocation of at least a time or frequency resource for use by the sidelink feedback signaling and the other uplink signaling as the impending collision with respect to forwarding the sidelink feedback signaling.

24. The apparatus of claim 22 , wherein the processing system configured to cause the apparatus to implement sidelink feedback signaling processing is configured to cause the apparatus to:

determine to drop or communicate the sidelink feedback signaling based at least in part on a priority based sidelink feedback signaling rule implemented by the intermediary UE.

25. The apparatus of claim 22 , wherein the processing system configured to cause the apparatus to implement sidelink feedback signaling processing is configured to cause the apparatus to:

determine to drop or communicate the sidelink feedback signaling based at least in part on a priority between the sidelink feedback signaling and at least a portion of the other uplink signaling.

26. The apparatus of claim 25 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on an index value associated with the other uplink signaling.

27. The apparatus of claim 25 , wherein the priority between the sidelink feedback signaling and the at least a portion of the other uplink signaling is based at least in part on a priority value associated with the sidelink feedback signaling.

28. The apparatus of claim 27 , wherein the priority value associated with the sidelink feedback signaling comprises a priority value of a sidelink transmission corresponding to the sidelink feedback signaling.

29. The apparatus of claim 28 , wherein the priority value of the sidelink transmission is based at least in part on a sidelink transmission priority selected from the group consisting of:

a transmit block priority provided for a transmit block of the sidelink transmission;

a transmit block size priority of a transmit block of the sidelink transmission; and

a sidelink data retransmission priority of the sidelink transmission.

30. The apparatus of claim 22 , wherein the processing system is further configured to cause the apparatus:

to identify the impending collision with respect to forwarding the sidelink feedback signaling and the other uplink signaling from the intermediary UE, wherein the processing system configured to cause the apparatus to implement sidelink feedback signaling processing is configured to cause the apparatus to determine to drop the one of the sidelink feedback signaling or the other uplink signaling in association with identifying the impending collision.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2022
From: GUO, HUI; BAGHEL, SUDHIR KUMAR; NGUYEN, TIEN VIET
To: QUALCOMM INCORPORATED
Reel/Frame 059328/0971 →
Priority Claims (1)
WO PTC/CN2019/110341 · Oct 10, 2019 · international
Continuity (1)
Related Publication 20220330268A1 · Oct 13, 2022