IP Library › Granted Patent US 12,047,172
Granted Patent B2
US 12,047,172 · App. 17/593,326 · Granted Jul 23, 2024

Systems and methods for PDCCH repetition reception

Inventors: Yushu Zhang (Beijing, CN); Chunhai Yao (Beijing, CN); Dawei Zhang (Saratoga, CA); Haitong Sun (Cupertino, CA); Hong He (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.
H04L1/08H04W72/23
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Quick Facts
Patent No.
US 12,047,172
App. No.
17/593,326
Granted
Jul 23, 2024
Kind
B2
Abstract

A user equipment (UE) monitors a Physical Downlink Control Channel (PDCCH). The UE receives a configuration for a physical downlink control channel (PDCCH) including repetitions for PDCCH candidates comprising first PDCCH data, wherein the PDCCH candidates are repeated across multiple durations of a DL resource grid, detects, based on a repetition detection scheme, each of the PDCCH candidates and combines soft bits from each of the PDCCH candidates, wherein the combined soft bits are jointly decoded to determine the first PDCCH data and calculates a number of blind decodes (BDs) for the durations of the DL resource grid carrying the PDCCH candidates, wherein at least one BD value for the PDCCH candidates is scaled by a scaling factor for the calculation of the number of BDs.

Claims (50)

1. A processor configured to perform operations comprising:

receiving a configuration for a physical downlink control channel (PDCCH) including repetitions for PDCCH candidates comprising first PDCCH data, wherein the PDCCH candidates are repeated across multiple durations of a DL resource grid;

detecting, based on a repetition detection scheme, each of the PDCCH candidates and combining soft bits from each of the PDCCH candidates, wherein the combined soft bits are jointly decoded to determine the first PDCCH data;

calculating a number of blind decodes (BDs) for the durations of the DL resource grid carrying the PDCCH candidates, wherein at least one BD value for the PDCCH candidates is scaled by a scaling factor for the calculation of the number of BDs;

comparing the number of BDs to a maximum BD limit;

determining whether one or more of the durations comprises a number of BDs exceeding the maximum BD limit;

performing an overbooking operation when the one or more of the durations comprises a number of BDs exceeding the maximum BD limit; and

determining a priority for each of a plurality of search spaces (SS), wherein a lowest priority SS is dropped until the number of BDs is within the maximum BD limit, wherein the priority is determined based on an SS group and an SS identifier, wherein the SS group comprises one of a common search space (CSS) or a user equipment (UE)-specific search space (USS).

2. The processor of claim 1 , wherein the duration is a slot or a span, and

wherein a first BD value for PDCCH candidates from an earlier one of the durations N−1 are scaled by a first scaling factor and a second BD value for PDCCH candidates from a last duration N are scaled by a second scaling factor different from the first scaling factor.

3. The processor of claim 2 , wherein the second scaling factor for the last duration N is greater than the first scaling factor for the earlier durations N−1.

4. The processor of claim 3 , wherein the first and second scaling factors are dependent on a soft combining scheme used by a user equipment (UE) for the PDCCH candidate decoding,

wherein a first soft combining scheme comprises detecting the soft bits from each of the earlier durations N−1 and the last duration N and combining the soft bits in the last duration N and;

wherein a second soft combining scheme comprises buffering data from each of the earlier durations N−1, detecting the soft bits from each of the earlier durations in the last duration N and combining the soft bits in the last duration N.

5. The processor of claim 3 , wherein the first and second scaling factors are dependent on a configuration of a control resource set (CORESET) and search space (SS) for the multiple durations of the DL resource grid carrying the PDCCH candidates.

6. The processor of claim 1 , wherein the duration is a slot, and

wherein a BD value is calculated on an inter-slot basis for the multiple slots, the BD value for the PDCCH candidates repeated across the multiple slots being equal to a number of PDCCH candidates for a single one of the slots scaled by a scaling factor.

7. The processor of claim 1 , wherein the number of BDs for the durations is calculated by summing the at least one BD value for the PDCCH candidates with additional BD values for additional PDCCH candidates carried in the DL resource grid.

8. The processor of claim 7 , wherein the overbooking operation comprises:

dropping certain ones of the configured PDCCH candidates so that the candidates are not searched; and

recalculating the number of BDs without including the PDCCH candidates that are dropped.

9. The processor of claim 1 , wherein an entirety of a given SS group is dropped when one SS from the SS group is dropped.

10. The processor of claim 1 , wherein, when one of the PDCCH candidates repeated across the multiple durations is dropped, the other ones of the PDCCH candidates are not dropped.

11. The processor of claim 10 , wherein, when one of the PDCCH candidates repeated across the multiple durations is dropped, the other ones of the PDCCH candidates are not dropped, and

when only a single PDCCH candidate from a set of PDCCH candidates subject to repetition has not been dropped, the operations further comprise decoding the PDCCH candidate without soft combining and not using the scaling factor to calculate the BD value.

12. The processor of claim 10 , wherein a scheduling offset and a DCI action delay is counted based on either a last actually transmitted PDCCH repetition or a latest nominal PDCCH repetition.

13. The processor of claim 1 , wherein the scaling factor is based on UE capability and the operations further comprise:

reporting at least one potential scaling factor to the network.

14. The processor of claim 13 , wherein the operations further comprise:

receiving a configuration for the scaling factor from the network, wherein the scaling factor is selected from the reported at least one potential scaling factor.

15. A user equipment (UE), comprising:

a transceiver configured to communicate with a network; and

a processor communicatively coupled with the transceiver and configured to perform operations comprising:

receiving a configuration for a physical downlink control channel (PDCCH) including repetitions for PDCCH candidates comprising first PDCCH data, wherein the PDCCH candidates are repeated across multiple durations of a DL resource grid;

detecting, based on a repetition detection scheme, each of the PDCCH candidates and combining soft bits from each of the PDCCH candidates, wherein the combined soft bits are jointly decoded to determine the first PDCCH data; and

calculating a number of blind decodes (BDs) for the durations of the DL resource grid carrying the PDCCH candidates, wherein at least one BD value for the PDCCH candidates is scaled by a scaling factor for the calculation of the number of BDs;

comparing the number of BDs to a maximum BD limit;

determining whether one or more of the durations comprises a number of BDs exceeding the maximum BD limit;

performing an overbooking operation when the one or more of the durations comprises a number of BDs exceeding the maximum BD limit; and

determining a priority for each of a plurality of search spaces (SS), wherein a lowest priority SS is dropped until the number of BDs is within the maximum BD limit, wherein the priority is determined based on an SS group and an SS identifier, wherein the SS group comprises one of a common search space (CSS) or a UE-specific search space (USS).

16. An apparatus comprising processing circuitry configured to perform operations comprising:

configuring a physical downlink control channel (PDCCH) for a user equipment (UE), the PDCCH including repetitions for PDCCH candidates comprising first PDCCH data, wherein the PDCCH candidates are repeated across multiple durations of a DL resource grid, wherein the UE is to use a repetition detection scheme to detect each of the PDCCH candidates and combine soft bits from each of the PDCCH candidates, wherein the combined soft bits are jointly decoded to determine the first PDCCH data; and

generating, for signaling to the UE, a scaling factor for the calculation of a number of blind decodes (BDs) for the durations of the DL resource grid carrying the PDCCH candidates, wherein the UE scales at least one BD value for the PDCCH candidates by the scaling factor for the calculation of the number of BDs, wherein the duration is a span and a first BD value for PDCCH candidates from an earlier one of the durations N−1 are scaled by a first scaling factor and a second BD value for PDCCH candidates from a last duration N are scaled by a second scaling factor different from the first scaling factor.

17. The apparatus of claim 16 , wherein the operations further comprise:

receiving at least one potential scaling factor from the UE, the at least one potential scaling factor being based on UE capability; and

selecting one scaling factor from the at least one potential scaling factor for the UE to use in the calculation.

18. The apparatus of claim 16 , wherein the operations further comprise:

generating, for signaling to the UE, a priority for each of a plurality of search spaces (SS) wherein, when one or more durations of the configured PDCCH comprises a number of BDs exceeding a maximum BD limit, the UE drops a lowest priority SS until the number of BDs is within the maximum BD limit.

19. The apparatus of claim 16 , further comprising transceiver circuitry.

20. The apparatus of claim 16 , further comprising an antenna.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2021
From: ZHANG, YUSHU; YAO, CHUNHAI; ZHANG, DAWEI; SUN, HAITONG; HE, HONG; OTERI, OGHENEKOME; YE, SIGEN; ZENG, WEI; YANG, WEIDONG
To: APPLE INC.
Reel/Frame 058125/0833 →
Continuity (1)
Related Publication 20230171031A1 · Jun 1, 2023
Cited By (1)
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