IP Library › Granted Patent US 11,863,253
Granted Patent B2
US 11,863,253 · App. 18/152,672 · Granted Jan 2, 2024

Type-1 codebook construction with multiple aggregation factors

Inventors: Seyed Ali Akbar Fakoorian (San Diego, CA); Mostafa Khoshnevisan (San Diego, CA); Seyedkianoush Hosseini (San Diego, CA); Xiaoxia Zhang (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04B7/0417H04B7/0456H04L1/1896H04W72/0446H04W72/1273H04W72/535
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Quick Facts
Patent No.
US 11,863,253
App. No.
18/152,672
Granted
Jan 2, 2024
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A user equipment (UE) may determine that a base station has scheduled the UE for one or more downlink transmissions, each of the one or more downlink transmissions having an associated repetition factor that corresponds to one of a plurality of configured repetition factors configured at the UE. The UE may identify an applied repetition factor to apply to feedback codebook generation for the one or more downlink transmissions. The UE may generate a feedback codebook for reporting feedback for the one or more downlink transmissions, the feedback codebook populated based at least in part on the applied repetition factor and on whether the one or more downlink transmissions were successfully received and decoded. The UE may transmit to the base station a feedback report that includes the feedback codebook.

Claims (72)

1. A method for wireless communication at a user equipment (UE), comprising:

determining that a network device has scheduled the UE for one or more downlink transmissions, each of the one or more downlink transmissions having an associated repetition factor that corresponds to one of a plurality of configured repetition factors configured at the UE;

identifying an applied repetition factor to apply to feedback codebook generation for the one or more downlink transmissions based at least in part on a maximum number of configured repetition factors of the plurality of configured repetition factors;

generating a feedback codebook for reporting feedback for the one or more downlink transmissions, the feedback codebook populated based at least in part on the applied repetition factor; and

transmitting to the network device a feedback report that includes the feedback codebook.

2. The method of claim 1 , further comprising:

identifying the maximum number of configured repetition factors without counting configured repetition factors corresponding to inactive semi-persistent scheduling (SPS) configurations.

3. The method of claim 1 , further comprising:

identifying the maximum number of configured repetition factors by counting configured repetition factors corresponding to both active and inactive semi-persistent scheduling (SPS) configurations.

4. The method of claim 1 , further comprising:

identifying the applied repetition factor as a value of one; and

generating the feedback codebook.

5. The method of claim 1 , further comprising:

determining, for each of the one or more downlink transmissions, that one or more instances of the downlink transmission has been dropped; and

generating the feedback codebook differently for the one or more instances of the downlink transmission that has been dropped and for one or more instances of the downlink transmission that are not dropped.

6. The method of claim 5 , wherein generating the feedback codebook further comprises:

generating an acknowledgement/negative-acknowledgement (ACK/NACK) indication for each downlink transmission that was actually received and decoded; and

refraining from generating an ACK/NACK indication for each instance of a dropped downlink transmission opportunity.

7. The method of claim 1 , further comprising:

receiving a configuration of a plurality of semi-persistent scheduling (SPS) configurations, wherein each downlink transmission of the one or more downlink transmissions is associated with a common SPS configuration or with different SPS configurations of the plurality of SPS configurations.

8. The method of claim 1 , wherein the feedback codebook is generated without respect to a downlink control information associated with the one or more downlink transmissions.

9. The method of claim 1 , wherein the UE is configured with a plurality of reporting offset values for transmitting the feedback report to the network device, each of the plurality of reporting offset values representing a number of slots after a last nominal downlink transmission, the plurality of reporting offset values spanning an evaluation window, the method further comprising:

generating the feedback codebook based at least in part on evaluating each of the plurality of reporting offset values within the evaluation window.

10. The method of claim 1 , wherein the feedback codebook comprises a type-1 codebook.

11. A method for wireless communication at a network device, comprising:

scheduling a user equipment (UE) for one or more downlink transmissions, each of the one or more downlink transmissions having an associated repetition factor that corresponds to one of a plurality of configured repetition factors configured at the UE;

identifying an applied repetition factor for the UE to apply to feedback codebook generation for the one or more downlink transmissions based at least in part on a maximum number of configured repetition factors from the plurality of configured repetition factors; and

receiving a feedback report from the UE that includes a feedback codebook, the feedback codebook generated for reporting feedback for the one or more downlink transmissions and populated based at least in part on the applied repetition factor.

12. The method of claim 11 , further comprising:

identifying the maximum number of configured repetition factors without counting configured repetition factors corresponding to inactive semi-persistent scheduling (SPS) configurations of the UE.

13. The method of claim 11 , further comprising:

identifying the maximum number of configured repetition factors by counting configured repetition factors corresponding to both active and inactive semi-persistent scheduling (SPS) configurations of the UE.

14. The method of claim 11 , further comprising:

identifying the applied repetition factor as a value of one.

15. The method of claim 14 , further comprising:

scheduling, based at least in part on the plurality of configured repetition factors, at least one non-conflicted instance of the downlink transmission during an evaluation window that is based at least in part on a reporting offset value.

16. The method of claim 11 , further comprising:

determining, for each of the one or more downlink transmissions, that one or more instances of the downlink transmission has been dropped, wherein the feedback codebook is generated differently for the one or more instances of the downlink transmission that has been dropped and for one or more instances of the downlink transmission that are not dropped.

17. The method of claim 16 , wherein the feedback codebook is generated based at least in part on, an acknowledgement/negative-acknowledgement (ACK/NACK) indication is generated for each downlink transmission that was actually received and decoded by the UE, and an ACK/NACK indication is not generated for each instance of a dropped downlink transmission opportunity.

18. An apparatus for wireless communication at a user equipment (UE), comprising:

a processor,

memory coupled with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

determine that a network device has scheduled the UE for one or more downlink transmissions, each of the one or more downlink transmissions having an associated repetition factor that corresponds to one of a plurality of configured repetition factors configured at the UE;

identify an applied repetition factor to apply to feedback codebook generation for the one or more downlink transmissions based at least in part on a maximum number of configured repetition factors of the plurality of configured repetition factors;

generate a feedback codebook for reporting feedback for the one or more downlink transmissions, the feedback codebook populated based at least in part on the applied repetition factor; and

transmit to the network device a feedback report that includes the feedback codebook.

19. The apparatus of claim 18 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify the applied repetition factor as a value of one; and

generate the feedback codebook.

20. The apparatus of claim 18 , wherein the instructions are further executable by the processor to cause the apparatus to:

determine, for each of the one or more downlink transmissions, that one or more instances of the downlink transmission has been dropped; and

generate the feedback codebook differently for the one or more instances of the downlink transmission that has been dropped and for one or more instances of the downlink transmission that are not dropped.

21. The apparatus of claim 20 , wherein the instructions to generate the feedback codebook further are executable by the processor to cause the apparatus to:

generate an acknowledgement/negative-acknowledgement (ACK/NACK) indication for each downlink transmission that was actually received and decoded; and

refrain from generating an ACK/NACK indication for each instance of a dropped downlink transmission opportunity.

22. The apparatus of claim 18 , wherein the instructions are further executable by the processor to cause the apparatus to:

receive a configuration of a plurality of semi-persistent scheduling (SPS) configurations, wherein each downlink transmission of the one or more downlink transmissions is associated with a common SPS configuration or with different SPS configurations of the plurality of SPS configurations.

23. The apparatus of claim 18 , wherein the feedback codebook is generated without respect to a downlink control information associated with the one or more downlink transmissions.

24. The apparatus of claim 18 , wherein the UE is configured with a plurality of reporting offset values for transmitting the feedback report to the network device, each of the plurality of reporting offset values representing a number of slots after a last nominal downlink transmission, the plurality of reporting offset values spanning an evaluation window.

25. The apparatus of claim 18 , wherein the feedback codebook comprises a type-1 codebook.

26. The apparatus of claim 18 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify the applied repetition factor as a value of one.

27. The apparatus of claim 18 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify the applied repetition factor as a value of one.

28. An apparatus for wireless communication at a network device, comprising:

a processor,

memory coupled with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

schedule a user equipment (UE) for one or more downlink transmissions, each of the one or more downlink transmissions having an associated repetition factor that corresponds to one of a plurality of configured repetition factors configured at the UE;

identify an applied repetition factor for the UE to apply to feedback codebook generation for the one or more downlink transmissions based at least in part on a maximum number of configured repetition factors of the plurality of configured repetition factors; and

receive a feedback report from the UE that includes a feedback codebook, the feedback codebook generated for reporting feedback for the one or more downlink transmissions and populated based at least in part on the applied repetition factor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2023
From: FAKOORIAN, SEYED ALI AKBAR; KHOSHNEVISAN, MOSTAFA; HOSSEINI, SEYEDKIANOUSH; ZHANG, XIAOXIA
To: QUALCOMM INCORPORATED
Reel/Frame 062333/0499 →
Continuity (3)
Continuation 17222672 · Apr 5, 2021
Provisional Application 63006554 · Apr 7, 2020
Related Publication 20230239011A1 · Jul 27, 2023