IP Library › Granted Patent US 11,979,266
Granted Patent B2
US 11,979,266 · App. 17/448,702 · Granted May 7, 2024

Control channel decoding configurations for cross-carrier scheduling

Inventors: Kazuki Takeda (Tokyo, JP); Alberto Rico Alvarino (San Diego, CA); Peter Gaal (San Diego, CA); Wanshi Chen (San Diego, CA); Tao Luo (San Diego, CA); Jing Sun (San Diego, CA); Juan Montojo (San Diego, CA); Mostafa Khoshnevisan (San Diego, CA)
Assignee: Qualcomm Incorporated
H04L27/26025H04L1/0038H04W24/08H04W72/1263H04W72/23
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Quick Facts
Patent No.
US 11,979,266
App. No.
17/448,702
Granted
May 7, 2024
Kind
B2
Abstract

Mechanisms for cross-carrier scheduling from a first cell to a second cell in a wireless networking scheme are provided. In one aspect, a method includes receiving, from a base station (BS), a first configuration for scheduling in a first cell having a first subcarrier spacing (SCS), wherein the first configuration is associated with a first search space in the first cell. The method further includes receiving, from the BS, a second configuration for scheduling in the first cell, wherein the second configuration is associated with a second search space in a second cell, and wherein the second cell is associated with a different second SCS. The method further includes determining a number of blind detections (BDs) based on at least one of the first SCS or the second SCS, and monitoring, based on the number of BDs, for downlink control information (DCI) in the first and second search spaces.

Claims (79)

1. A method of wireless communication performed by a user equipment (UE), the method comprising:

receiving, from a base station (BS), a first configuration for scheduling in a first cell, wherein the first configuration is associated with a first search space in the first cell, and wherein the first cell is associated with a first subcarrier spacing (SCS);

receiving, from the BS, a second configuration for scheduling in the first cell, wherein the second configuration is associated with a second search space in a second cell different from the first cell, and wherein the second cell is associated with a second SCS different from the first SCS;

determining a number of blind detections (BDs) based on at least one of the first SCS or the second SCS; and

monitoring, based on the number of BDs, for downlink control information (DCI) in the second search space, wherein the monitoring comprises:

excluding, in response to a determination that a total number of DCI candidates in the first search space and the second search space exceeds the number of BDs, the first search space from the monitoring and not the second search space, wherein the excluding is based on a search space identifier associated with the first search space.

2. The method of claim 1 , wherein the determining the number of BDs comprises:

selecting a lower SCS between the first SCS or the second SCS; and

determining the number of BDs based on a configuration associated with the lower SCS.

3. The method of claim 1 , wherein the determining the number of BDs comprises:

selecting a higher SCS between the first SCS or the second SCS; and

determining the number of BDs based on a configuration associated with the higher SCS.

4. The method of claim 1 , further comprising:

receiving, from the BS, a radio resource control (RRC) configuration indicating a third SCS, wherein the third SCS corresponds to the first SCS or the second SCS,

wherein the determining the number of BDs is further based on the third SCS.

5. The method of claim 1 , wherein the monitoring for the DCI comprises:

performing a subset of the BDs in the second search space.

6. The method of claim 1 , wherein the at least one of the first search space comprises a first plurality of search spaces or the second search space comprises a second plurality of search spaces, and wherein the monitoring for the DCI comprises:

determining a total number of DCI candidates in the at least one of the first plurality of search spaces or the second plurality of search spaces exceeds the number of BDs;

excluding, in response to determining the total number of DCI candidates exceed the number of BDs, one or more search spaces from the at least one of the first plurality of search spaces or the second plurality of search spaces based on cell identifiers associated with the one or more search spaces; and

excluding one or more other search spaces from the at least one of the first plurality of search spaces or the second plurality of search spaces further based on search space identifiers associated with the one or more other search spaces.

7. The method of claim 1 , wherein the first configuration indicates a first monitoring periodicity, and wherein the second configuration indicates a second monitoring periodicity different from the first monitoring periodicity, and wherein the determining the number of BDs is further based on at least one of the first monitoring periodicity, the first SCS, the second monitoring periodicity, or the first SCS.

8. The method of claim 1 , wherein:

the first cell is a primary cell (Pcell) and the second cell is a secondary cell (Scell);

the first SCS is less than the second SCS;

the determining the number of BDs is based on the first SCS.

9. A method of wireless communication performed by a base station (BS), the method comprising:

transmitting, to a user equipment (UE), a first configuration for scheduling in a first cell, wherein the first configuration is associated with a first search space in the first cell, and wherein the first cell is associated with a first subcarrier spacing (SCS);

transmitting, to the UE, a second configuration for scheduling in the first cell, wherein the second configuration is associated with a second search space in a second cell different from the first cell, and wherein the second cell is associated with a second SCS different from the first SCS;

transmitting, to the UE, a third configuration indicating a third SCS associated with a number of downlink control information (DCI) blind detections (BDs) in the first search space and the second search space, wherein the third SCS corresponds to one of the first SCS or the second SCS; and

transmitting, to the UE, DCI in the second search space based on the number of DCI BDs and a determination that a total number of DCI candidates in the first search space and the second search space exceeds the number of DCI BDs, wherein the transmitting is further based on a search space identifier associated with the first search space.

10. The method of claim 9 , further comprising:

determining the number of DCI BDs based on the third SCS and a capability of the UE.

11. The method of claim 9 , wherein the transmitting the third configuration indicating the third SCS comprises transmitting, to the UE, a radio resource control (RRC) configuration comprising the third configuration.

12. The method of claim 9 , wherein:

the first cell is a primary cell (Pcell) and the second cell is a secondary cell (Scell);

the first SCS is less than the second SCS;

the number of DCI BDs is based on the first SCS.

13. A user equipment (UE), comprising:

a transceiver configured to:

receive, from a base station (BS), a first configuration for scheduling in a first cell, wherein the first configuration is associated with a first search space in the first cell, and wherein the first cell is associated with a first subcarrier spacing (SCS); and

receive, from the BS, a second configuration for scheduling in the first cell, wherein the second configuration is associated with a second search space in a second cell different from the first cell, and wherein the second cell is associated with a second SCS different from the first SCS; and

a processor configured to:

determine a number of blind detections (BDs) based on at least one of the first SCS or the second SCS; and

monitor, based on the number of BDs, for downlink control information (DCI) in the second search space; and

exclude, based on a search space identifiers associated with the first search space and in response to a determination that a total number of DCI candidates in the first search space and the second search space exceeds the number of BDs, the first search space from the monitoring, and not the second search space.

14. The UE of claim 13 , wherein the processor configured to determine the number of BDs comprises the processor configured to:

select a lower SCS between the first SCS or the second SCS; and

determine the number of BDs based on a configuration associated with the lower SCS.

15. The UE of claim 13 , wherein the processor configured to determine the number of BDs comprises the processor configured to:

select a higher SCS between the first SCS or the second SCS; and

determine the number of BDs based on a configuration associated with the higher SCS.

16. The UE of claim 13 , wherein the transceiver is further configured to:

receive, from the BS, a radio resource control (RRC) configuration indicating a third SCS, wherein the third SCS corresponds to the first SCS or the second SCS,

wherein the processor configured to determine the number of BDs comprises the processor configured to determine the number of BDs based on the third SCS.

17. The UE of claim 13 , wherein the processor configured to monitor for the DCI comprises the processor configured to:

perform a subset of the BDs in the second search space.

18. The UE of claim 13 , wherein the at least one of the first search space comprises a first plurality of search spaces or the second search space comprises a second plurality of search spaces, and wherein the processor configured to monitor for the DCI comprises the processor configured to:

determine a total number of DCI candidates in the at least one of the first plurality of search spaces or the second plurality of search spaces exceeds the number of BDs;

exclude, in response to determining the total number of DCI candidates exceed the number of BDs, one or more search spaces from the at least one of the first plurality of search spaces or the second plurality of search spaces based on cell identifiers associated with the one or more search spaces; and

exclude one or more other search spaces from the at least one of the first plurality of search spaces or the second plurality of search spaces further based on search space identifiers associated with the one or more other search spaces.

19. The UE of claim 13 , wherein the first configuration indicates a first monitoring periodicity, and wherein the second configuration indicates a second monitoring periodicity different from the first monitoring periodicity, and wherein the processor configured to determine the number of BDs comprises the processor configured to determine the number of BDs based on at least one of the first monitoring periodicity, the first SCS, the second monitoring periodicity, or the first SCS.

20. The UE of claim 13 , wherein:

the first cell is a primary cell (Pcell) and the second cell is a secondary cell (Scell);

the first SCS is less than the second SCS;

the UE is configured to determine the number of BDs is based on the first SCS.

21. A base station (BS), comprising:

a transceiver configured to:

transmit, to a user equipment (UE), a first configuration for scheduling in a first cell, wherein the first configuration is associated with a first search space in the first cell, and wherein the first cell is associated with a first subcarrier spacing (SCS);

transmit, to the UE, a second configuration for scheduling in the first cell, wherein the second configuration is associated with a second search space in a second cell different from the first cell, and wherein the second cell is associated with a second SCS different from the first SCS;

transmit, to the UE, a third configuration indicating a third SCS associated with a number of downlink control information (DCI) blind detections (BDs) in the first search space and the second search space, wherein the third SCS corresponds to one of the first SCS or the second SCS; and

transmit, to the UE, DCI in at least one of the first search space or the second search space based on the number of DCI BDs and a determination that a total number of DCI candidates in the first search space and the second search space exceeds the number of DCI BDs, wherein the BS is configured to transmit the DCI in the first search space further based on a search space identifier associated with the first search space.

22. The BS of claim 21 , further comprising a processor configured to:

determine the number of DCI BDs based on the third SCS and a capability of the UE.

23. The BS of claim 21 , wherein the transceiver configured to transmit the third configuration indicating the third SCS comprises the transceiver configured to transmit, to the UE, a radio resource control (RRC) configuration comprising the third configuration.

24. The BS of claim 21 , wherein:

the first cell is a primary cell (Pcell) and the second cell is a secondary cell (Scell);

the first SCS is less than the second SCS;

the number of DCI BDs is based on the first SCS.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2021
From: TAKEDA, KAZUKI; RICO ALVARINO, ALBERTO; GAAL, PETER; CHEN, WANSHI; LUO, TAO; SUN, JING; MONTOJO, JUAN; KHOSHNEVISAN, MOSTAFA
To: QUALCOMM INCORPORATED
Reel/Frame 057892/0051 →
Continuity (2)
Provisional Application 63086515 · Oct 1, 2020
Related Publication 20220109597A1 · Apr 7, 2022