IP Library › Granted Patent US 12,256,378
Granted Patent B2
US 12,256,378 · App. 17/441,929 · Granted Mar 18, 2025

Method and systems for multiple precoder indication for physical uplink shared channel communications

Inventors: Yushu Zhang (Beijing, CN); Chunhai Yao (Beijing, CN); Chunxuan Ye (San Diego, CA); Dawei Zhang (Saratoga, CA); Haitong Sun (Cupertino, CA); Hong He (San Jose, CA); Jie Cui (San Jose, CA); Oghenekome Oteri (San Diego, CA); Sigen Ye (Whitehouse Station, NJ); Wei Zeng (Saratoga, CA); Weidong Yang (San Diego, CA)
Assignee: APPLE INC.
H04W72/1268H04L5/0051H04W72/23
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Quick Facts
Patent No.
US 12,256,378
App. No.
17/441,929
Granted
Mar 18, 2025
Kind
B2
Abstract

Approaches for performing Physical Uplink Shared Channel (PUSCH) transmissions include receiving, by a user equipment (UE) from a base station, an indicator of a plurality of precoders corresponding to M Physical Uplink Shared Channel (PUSCH) repetitions, wherein M is an integer. A plurality of precoders corresponding to two or more of the M PUSCH repetitions are indicated. The UE configures the plurality of precoders based on the indicator and transmits one or more of the M Physical Uplink Shared Channel (PUSCH) repetitions corresponding to one or more of the plurality of precoders. The indicator can be provided in higher layer signaling. One or more transmission rank indicator (TRIs) and transmission precoder matrix indicators (TPMIs) for the M PUSCH repetitions can be provided. The indicator can be provided in a scheduling downlink control indicator (DCI) communication. The indicator can also be provided within N sounding reference signal (SRS) resource indicator(s) (SRIs) of the scheduling DCI.

Claims (46)

1. A method, comprising:

receiving, by a user equipment (UE), an indicator from a base station, the indicator comprising information to enable a plurality of precoders;

configuring the UE, based on the indicator, to enable the UE to associate the plurality of precoders to one or more of a plurality of Physical Uplink Shared Channel (PUSCH) repetitions based on the indicator, the associating including a cyclic pattern between the plurality of precoders and the plurality of PUSCH repetitions; and

transmitting, by the UE, the one or more of the plurality of PUSCH repetitions corresponding to one or more of the plurality of precoders,

wherein the indicator comprises a first field and a second field in a single downlink control information (DCI) transmission, the first field in the single DCI transmission providing information about a first precoder, and the second field in the single DCI transmission providing information about a second precoder.

2. The method of claim 1 , wherein the indicator is provided in higher layer signaling.

3. The method of claim 1 , wherein the indicator is provided in a Radio Resource Control (RRC) communication, or provided in an information element (IE) corresponding to one or more of codebook-based transmission or non-codebook based PUSCH transmission.

4. The method of claim 1 , wherein the indicator further comprises an indication of a PUSCH transmission scheme.

5. The method of claim 1 , wherein:

the indicator is one of a multiPrecoderBasedCodebook information element (IE) or a multiPrecoderBasedNonCodebook IE, and

either the UE enables multiple precoders for a codebook-based PUSCH transmission scheme based on the multiPrecoderBasedCodebook IE,

or the UE enables multiple precoders for a non-codebook based PUSCH transmission scheme based on the multiPrecoderBasedNonCodebook IE.

6. A method, comprising:

receiving, by a user equipment (UE), a first indicator from a base station, the first indicator comprising information to enable a plurality of precoders;

receiving, by the user equipment (UE), a second indicator from the base station, the second indicator comprising information about the plurality of precoders, wherein the plurality of precoders correspond to M Physical Uplink Shared Channel (PUSCH) repetitions, wherein M is an integer;

configuring, by the UE, the plurality of precoders based on the first indicator and the second indicator, wherein the plurality of precoders correspond with the M PUSCH repetitions using a cyclic pattern of correspondence; and

transmitting, by the UE, one or more of the M PUSCH repetitions corresponding to one or more of the plurality of precoders,

wherein the first indicator and the second indicator respectively comprise a first field and a second field in a single downlink control information (DCI) transmission.

7. The method of claim 6 , wherein the second indicator identifies a quantity of precoders enabled for PUSCH repetitions.

8. The method of claim 6 , wherein at least one of the first indicator or the second indicator is provided in higher layer signaling.

9. The method of claim 6 , wherein the second indicator provides an indication of the plurality of precoders corresponding to two or more of the M PUSCH repetitions.

10. The method of claim 6 , wherein the second indicator is provided for the M PUSCH repetitions, in a scheduling downlink control indicator (DCI) communication.

11. The method of claim 10 , wherein the second indicator is provided within N sounding reference signal (SRS) resource indicator(s) (SRIs) of the scheduling DCI,

wherein N is an integer less than or equal to M,

wherein the N SRIs are selected from one or more SRS resource sets for non-codebook based transmission, and

wherein a mapping of the N SRIs and M PUSCH repetitions is based on a configured pattern.

12. The method of claim 6 , wherein the UE, based on the second indicator, generates a mapping of the plurality of precoders to the M PUSCH repetitions.

13. The method of claim 6 , wherein the second indicator comprises one or more transmission rank indicator (TRIs) and N transmission precoder matrix indicators (TPMIs) for the M PUSCH repetitions, and wherein N is an integer less than or equal to M.

14. A user equipment (UE), comprising:

a transceiver to communicate with a base station; and

a processor coupled to a memory, wherein the processor is configured to execute instructions stored in the memory to:

receive, from the base station via the transceiver, a first indicator comprising information to enable a plurality of precoders;

receive, from the base station via the transceiver, a second indicator comprising information about the plurality of precoders corresponding to M Physical Uplink Shared Channel (PUSCH) repetitions, wherein M is an integer;

configure, based on the first indicator and the second indicator, the plurality of precoders, wherein the plurality of precoders correspond with the M PUSCH repetitions using a cyclic pattern of correspondence; and

transmit one or more of the M PUSCH repetitions corresponding to one or more of the plurality of precoders,

wherein the first indicator and the second indicator respectively comprise a first field and a second field in a single downlink control information (DCI) transmission.

15. The UE of claim 14 , wherein at least one of the first indicator and the second indicator is provided in higher layer signaling.

16. The UE of claim 14 , wherein the second indicator provides an indication of a plurality of precoders corresponding to two or more of the M PUSCH repetitions.

17. The UE of claim 14 , wherein the second indicator comprises an indication of one or more transmission rank indicator (TRIs) and N transmission precoder matrix indicators (TPMIs) for the M PUSCH repetitions, and

wherein N is an integer less than or equal to M.

18. The UE of claim 17 , wherein the second indicator provides an indication of one TRI and N TPMIs for M PUSCH repetitions.

19. The UE of claim 14 , wherein the second indicator is provided for the M PUSCH repetitions, in a scheduling downlink control indicator (DCI) communication.

20. The UE of claim 19 , wherein the second indicator is provided within N sounding reference signal (SRS) resource indicator(s) (SRIs) of the scheduling DCI,

wherein N is an integer less than or equal to M,

wherein the N SRIs are selected from one or more SRS resource sets for non-codebook based transmission, and

wherein the N SRIs and M PUSCH repetitions are mapped based on a configured pattern.

Continuity (1)
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