IP Library Granted Patent US 11,950,223
Granted Patent B2
US 11,950,223 · App. 17/441,097 · Granted Apr 2, 2024

Scheduling new radio (NR) shared channel transmission

Inventors: Sergey Panteleev (Cupertino, CA); Debdeep Chatterjee (Cupertino, CA)
Assignee: Apple Inc.
H04W72/1263H04L1/0003H04L1/0061H04L5/1469H04W72/0446H04W72/23
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Quick Facts
Patent No.
US 11,950,223
App. No.
17/441,097
Granted
Apr 2, 2024
Kind
B2
Abstract

In a general aspect, a User Equipment (UE) in a cellular communications network receives a Radio Resource Control (RRC) signaling message from a base station communicatively coupled to the UE over a communications channel. The UE accesses a search space in the RRC signaling message. The UE identifies a fallback Downlink Control Information (DCI) Information Element (IE) included in the search space. The UE determines whether an aggregation factor is indicated in the fallback DCI IE for shared channel communications with the base station, over multiple slots in the communications channel. The UE determines an uplink/downlink (UL/DL) configuration for transmission on the communications channel. The UE schedules an aggregated transmission over multiple slots in the communications channel based on the aggregation factor and the uplink/downlink configuration.

Claims (67)

1. A method comprising:

receiving, at a user equipment (UE) in a cellular communications network, a Radio Resource Control (RRC) signaling message from a base station;

accessing, by the UE, a search space in the RRC signaling message;

identifying, by the UE, a fallback Downlink Control Information (DCI) information element (IE) included in the search space;

determining, by the UE, whether an aggregation factor is indicated in the fallback DCI IE for shared channel communications with the base station, over multiple slots in the communications channel;

determining, by the UE, an uplink/downlink (UL/DL) configuration for transmission on the communications channel; and

determining, by the UE, an aggregated transmission over multiple slots in the communications channel based on the aggregation factor and the uplink/downlink configuration.

2. The method of claim 1 , wherein accessing the search space comprises accessing one of a common search space (CSS) or a UE-specific search space (USS) in the RRC signaling message.

3. The method of claim 1 , wherein identifying the fallback DCI IE included in the search space comprises identifying one of a DCI format 0_0 IE or a DCI format 1_0 IE included in the search space.

4. The method of claim 1 , wherein determining the uplink/downlink configuration for transmission on the communications channel comprises determining one of a TDD-UL-DL-ConfigurationCommon IE or a TDD-UL-DL-ConfigDedicated IE included in the RRC signaling message.

5. The method of claim 4 , wherein the fallback DCI IE includes a DCI format 1_0 IE and the aggregation factor is indicated in one of the DCI format 1_0 IE or a DCI format 1_1 IE, and wherein determining the aggregated transmission comprises:

determining, using the aggregation factor, that the UE is scheduled to receive Physical Downlink Shared Channel (PDSCH) data over the multiple slots in the communications channel;

determining, using one of the TDD-UL-DL-ConfigurationCommon or TDD-UL-DL-ConfigDedicated IE, that at least one symbol from a set of symbols for a particular slot of the multiple slots is an uplink symbol; and

in response to determining that the UE is scheduled to receive PDSCH data over the multiple slots and that at least one symbol for the particular slot is an uplink symbol, scheduling the UE not to receive PDSCH in the particular slot.

6. The method of claim 4 , wherein the fallback DCI IE includes a DCI format 0_0 IE and the aggregation factor is indicated in one of the DCI format 0_0 IE a DCI format 0_1 IE, and wherein determining the aggregated transmission comprises:

determining, using the aggregation factor, that the UE is scheduled to transmit Physical Uplink Shared Channel (PUSCH) data over the multiple slots in the communications channel;

determining, using one of the TDD-UL-DL-ConfigurationCommon or TDD-UL-DL-ConfigDedicated IE, that at least one symbol from a set of symbols for a particular slot of the multiple slots is downlink symbol; and

in response to determining that the UE is scheduled to transmit PUSCH data over the multiple slots and that at least one symbol for the particular slot is a downlink symbol, scheduling the UE not to transmit PUSCH data in the particular slot.

7. The method of claim 4 , wherein identifying the fallback DCI IE included in the search space comprises identifying a DCI format 1_0 IE detected in USS, and the aggregation factor is indicated in one of the DCI format 1_0 IE or a DCI format 1_1 IE, and wherein determining the aggregated transmission comprises:

determining, using the aggregation factor, that the UE is scheduled to receive Physical Downlink Shared Channel (PDSCH) data over the multiple slots in the communications channel;

determining, using one of the TDD-UL-DL-ConfigurationCommon or TDD-UL-DL-ConfigDedicated IE, that at least one symbol from a set of symbols for a particular slot of the multiple slots is an uplink symbol; and

in response to determining that the UE is scheduled to receive PDSCH data over the multiple slots and that at least one symbol for the particular slot is an uplink symbol, scheduling the UE not to receive PDSCH in the particular slot.

8. The method of claim 4 , wherein identifying the fallback DCI IE included in the search space comprises identifying a DCI format 0_0 IE detected in USS, and the aggregation factor is indicated in one of the DCI format 0_0 IE or a DCI format 0_1 IE, and wherein determining the aggregated transmission comprises:

determining, using the aggregation factor, that the UE is scheduled to transmit Physical Uplink Shared Channel (PUSCH) data over the multiple slots in the communications channel;

determining, using one of the TDD-UL-DL-ConfigurationCommon or TDD-UL-DL-ConfigDedicated IE, that at least one symbol from a set of symbols for a particular slot of the multiple slots is downlink symbol; and

in response to determining that the UE is scheduled to transmit PUSCH data over the multiple slots and that at least one symbol for the particular slot is a downlink symbol, scheduling the UE not to transmit PUSCH data in the particular slot.

9. The method of claim 1 , wherein identifying the fallback DCI IE included in the search space comprises identifying a DCI format 1_0 IE detected in USS, the method further comprising:

determining that the UE is configured with pdsch-AggregationFactor;

in response to the determination, applying a same symbol allocation across a number of consecutive slots corresponding to the pdsch-AggregationFactor; and

receiving one of (i) PDSCH data scheduled by a Physical Downlink Control Channel (PDCCH) that includes one of a DCI format 1_1 IE or DCI format 1_0 IE detected in USS, and a Cyclic Redundancy Check (CRC) scrambled by at least one of Cell Radio Network Temporary Identifier (C-RNTI), Modulation and Coding Scheme C-RNTI (MCS C-RNTI), or Configured Scheduling RNTI (CS-RNTI), or (ii) PDSCH data scheduled without a corresponding PDCCH transmission using sps-Config,

wherein a transport block (TB) is repeated within each symbol allocation among each of the consecutive slots, and wherein the PDSCH is limited to a single transmission layer.

10. The method of claim 1 , wherein identifying the fallback DCI IE included in the search space comprises identifying a DCI format 0_0 IE detected in USS, the method further comprising:

determining that the UE is configured with pusch-AggregationFactor;

in response to the determination, applying a same symbol allocation across a number of consecutive slots corresponding to the pusch-AggregationFactor and configuring the PUSCH to a single transmission layer; and

transmitting PUSCH data scheduled by a PDCCH that includes one of a DCI format 0_1 IE or DCI format 0_0 IE detected in USS, and a CRC scrambled with at least one of C-RNTI or MCS-C-RNTI,

wherein transmitting the PUSCH data comprises repeating a TB is across the consecutive slots applying the same symbol allocation in each slot of the consecutive slots.

11. The method of claim 1 , wherein the fallback DCI IE is not configured to indicate an aggregation factor, the method further comprising:

determining that the UE is configured with pdsch-AggregationFactor;

in response to the determination, applying a same symbol allocation across a number of consecutive slots of the multiple slots corresponding to the pdsch-AggregationFactor; and

receiving one of (i) PDSCH data scheduled by a DCI format 1_1 IE in PDCCH, the PDCCH including a CRC scrambled by at least one of C-RNTI, MCS C-RNTI, or CS-RNTI, or (ii) PDSCH data scheduled without a corresponding PDCCH transmission using sps-Config,

wherein a transport block (TB) is repeated within each symbol allocation among each of the consecutive slots, and wherein the PDSCH is limited to a single transmission layer.

12. The method of claim 1 , wherein the fallback DCI IE is not configured to indicate an aggregation factor, the method further comprising:

determining that the UE is configured with pusch-AggregationFactor;

in response to the determination, applying a same symbol allocation across a number of consecutive slots of the multiple slots corresponding to the pusch-AggregationFactor and configuring the PUSCH to a single transmission layer; and

transmitting PUSCH data scheduled by a DCI format 0_1 IE in PDCCH, the PDCCH including a CRC scrambled with at least one of C-RNTI or MCS-C-RNTI.

13. The method of claim 1 , wherein the shared channel communications with the base station includes communications using one of a PDSCH or a PUSCH.

14. One or more non-transitory computer-readable media storing instructions that, when executed by one or more processors, are configured to cause the one or more processors to perform operations comprising:

receiving, at a user equipment (UE) in a cellular communications network, a Radio Resource Control (RRC) signaling message from a base station communicatively coupled to the UE over a communications channel;

accessing, by the UE, a search space in the RRC signaling message;

identifying, by the UE, a fallback Downlink Control Information (DCI) information element (IE) included in the search space;

determining, by the UE, whether an aggregation factor is indicated in the fallback DCI IE for shared channel communications with the base station, over multiple slots in the communications channel;

determining, by the UE, an uplink/downlink (UL/DL) configuration for transmission on the communications channel; and

determining, by the UE, an aggregated transmission over multiple slots in the communications channel based on the aggregation factor and the uplink/downlink configuration.

15. The one or more non-transitory computer-readable media of claim 14 , wherein accessing the search space comprises accessing one of a common search space (CSS) or a UE-specific search space (USS) in the RRC signaling message.

16. The one or more non-transitory computer-readable media of claim 14 , wherein identifying the fallback DCI IE included in the search space comprises identifying one of a DCI format 0_0 IE or a DCI format 1_0 IE included in the search space.

17. The one or more non-transitory computer-readable media of claim 14 , wherein determining the uplink/downlink configuration for transmission on the communications channel comprises determining one of a TDD-UL-DL-ConfigurationCommon IE or a TDD-UL-DL-ConfigDedicated IE included in the RRC signaling message.

18. An apparatus comprising:

one or more processors; and

one or more computer-readable media storing instructions that, when executed by the one or more processors, are configured to cause the one or more processors to perform operations comprising:

receiving, at a user equipment (UE) in a cellular communications network, a Radio Resource Control (RRC) signaling message from a base station communicatively coupled to the UE over a communications channel;

accessing, by the UE, a search space in the RRC signaling message;

identifying, by the UE, a fallback Downlink Control Information (DCI) information element (IE) included in the search space;

determining, by the UE, whether an aggregation factor is indicated in the fallback DCI IE for shared channel communications with the base station, over multiple slots in the communications channel;

determining, by the UE, an uplink/downlink (UL/DL) configuration for transmission on the communications channel; and

determining, by the UE, an aggregated transmission over multiple slots in the communications channel based on the aggregation factor and the uplink/downlink configuration.

19. The apparatus of claim 18 , wherein accessing the search space comprises accessing one of a common search space (CSS) or a UE-specific search space (USS) in the RRC signaling message.

20. The apparatus of claim 18 , wherein identifying the fallback DCI IE included in the search space comprises identifying one of a DCI format 0_0 IE or a DCI format 1_0 IE included in the search space.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2022
From: PANTELEEV, SERGEY; CHATTERJEE, DEBDEEP
To: INTEL CORPORATION
Reel/Frame 060589/0607 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2022
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 060877/0481 →
Continuity (2)
Provisional Application 62826799 · Mar 29, 2019
Related Publication 20220174692A1 · Jun 2, 2022