IP Library Granted Patent US 12,185,322
Granted Patent B2
US 12,185,322 · App. 17/530,642 · Granted Dec 31, 2024

Scheduling request transmission opportunity and resource configuration in new radio

Inventors: Gang Xiong (Portland, OR); Debdeep Chatterjee (San Jose, CA); Sergey Panteleev (Nizhny Novgorod, RU)
Assignee: Apple Inc.
H04W72/21H04L1/1614H04L5/0048H04W56/001H04W72/0446H04W72/20H04L5/1469H04W72/23
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,185,322
App. No.
17/530,642
Granted
Dec 31, 2024
Kind
B2
Abstract

Methods and architectures for establishing an uplink control channel in a fifth generation (5G) or new radio (NR) wireless network includes transmitting scheduling requests (SRs) at sub-slot level/symbol-level periodicities and determining whether SR transmit opportunities will collide with downlink (DL) signals being received and halting an SR transmission if the timing of DL symbols overlap at an OFDM symbol with the SR transmission.

Claims (42)

1. A baseband processor, comprising:

a memory interface; and

processing circuitry communicatively coupled to the memory interface and configured to perform operations comprising:

receiving a physical downlink control channel (PDCCH) signaling comprising slot format information (SFI) including information related to symbols of time division duplex (TDD) frames, the information corresponding to configured scheduling request (SR) resources having one or more of slot-level or symbol-level periodicities wherein a periodicity of the one or more SR resources is configured with 3 or 4 symbol periodicities associated with a 12 symbol enhanced cyclic prefix (ECP);

receiving L1 or L2 signaling comprising multiple SR resource configurations associated with the SR resources and an indication associated with the multiple SR resource configurations;

determining one or more SR resource configurations of the multiple SR resource configurations based on the indication; and

configuring activation and deactivation of SR transmissions at periods according to the determined one or more SR resource configurations, wherein activation and deactivation of SR transmissions includes activating the one or more SR resources with 3 or 4 symbol periodicities, and deactivating SR transmission occasions of periodicities other than 3 or 4 symbol periodicities.

2. The baseband processor of claim 1 , wherein the indication is associated with a SR resource index or a bitmap of SR resource configurations.

3. The baseband processor of claim 2 , wherein the indication further comprises a time-offset and a periodicity of the SR transmissions corresponding to a configured PUCCH type; and

receiving the indication by radio resource control (RRC) signaling.

4. The baseband processor of claim 1 , wherein the multiple SR resource configurations include a first SR resource profile having a symbol-level periodicity and a second SR resource profile having a slot-level periodicity.

5. The baseband processor of claim 4 , wherein the first SR resource profile is associated with Ultra Reliable Low Latency Communications (URLLC) and the second SR resource profile is associated with Enhanced Mobile Broadband (eMBB); and

receiving the indication by radio resource control (RRC) signaling, wherein the indication indicates dynamically configuring activation and deactivation of the first SR resource profile and the second SR resource profile.

6. The baseband processor of claim 1 , wherein the indication is based on one or more of minimum system information (MSI), remaining minimum system information (RMSI), or other system information (OSI).

7. The baseband processor of claim 1 , wherein the indication further indicates SR transmissions within physical uplink control channel (PUCCH) resources comprising a bitmap over slot symbols, wherein each bit in the bitmap indicates a starting symbol position of the PUCCH resources within a slot.

8. A user equipment (UE) comprising:

communication circuitry; and

one or more processors communicatively coupled to the communication circuitry and configured to:

receive group common physical downlink control channel (PDCCH) signaling comprising slot format information (SFI) including information relating to symbols of time division duplex (TDD) frames, the information corresponding to configured scheduling request (SR) resources having one or more of slot-level or symbol-level periodicities and a selectable size subcarrier spacing;

receive L1 or L2 signaling comprising resource configurations of the SR resources and an indication associated with the resource configurations;

determine one or more SR resources of the SR resources based on the indication; and

configure activation and deactivation of SR transmissions at periods according to the determined one or more SR resources, wherein a physical uplink control channel (PUCCH) comprises a SR transmission, and the activation and deactivation of SR transmissions includes deactivation of the PUCCH when a duration of the PUCCH exceeds a periodicity of the one or more SR resources.

9. The UE of claim 8 , wherein the indication further indicates SR transmissions within physical uplink control channel (PUCCH) resources comprising a bitmap over slot symbols, wherein each bit in the bitmap indicates a starting symbol position of the PUCCH resources within a slot.

10. The UE of claim 8 , wherein the selectable size subcarrier spacing is 15 kHz and a periodicity of the one or more SR resources is 2 symbols;

the one or more processors further configured to determine that the periodicity of the one or more SR resources corresponds to a smaller number of SR occasions than the configured SR resources; and

configure, based on determining that the periodicity of the one or more SR resources corresponds to the smaller number of SR occasions, a bitmap of size 7 to dynamically configure activation and deactivation of SR transmissions wherein the bitmap further corresponds to a physical uplink control channel (PUCCH) format for the SR transmissions.

11. The UE of claim 10 , wherein the indication is based on one or more of minimum system information (MSI), remaining minimum system information (RMSI), or other system information (OSI).

12. The UE of claim 8 , wherein a periodicity of the one or more SR resources is configured with 3 or 4 symbol periodicities associated with a 12 symbol enhanced cyclic prefix (ECP), and the activation and deactivation of SR transmissions includes activating the one or more SR resources with 3 or 4 symbol periodicities, and deactivating SR transmission occasions of periodicities other than 3 or 4 symbol periodicities.

13. The UE of claim 8 , wherein the selectable size subcarrier spacing is 120 KHz and a periodicity of the one or more SR resources is 0.125 ms, 0.25 ms, or 0.5 ms.

14. The UE of claim 8 , wherein the selectable size subcarrier spacing is 60 KHz and a periodicity of the one or more SR resources is 0.25 ms, or 0.5 ms.

15. A method for a User Equipment (UE), wherein the method causes the UE to:

receive physical downlink control channel (PDCCH) signaling including information related to symbols of time division duplex (TDD) frames, the information corresponding to configured scheduling request (SR) resources;

receive L1 or L2 signaling comprising multiple SR resource configurations associated with the SR resources and an indication associated with the multiple SR resource configurations, wherein the indication corresponds to a time offset and a periodicity of the multiple SR resource configurations;

determine one or more SR resources of the multiple SR resources based on the indication;

determine that the periodicity of the one or more SR resources corresponds to a smaller number of SR occasions than a number of configured SR resources; and

configure, a bitmap of size 7 to dynamically configure activation and deactivation of SR transmissions at periods according to the determined one or more SR resources, wherein the bitmap further corresponds to a physical uplink control channel (PUCCH) format for the SR transmissions.

16. The method claim 15 , wherein the multiple SR resource configurations include a first SR resource profile having a symbol-level periodicity and a second SR resource profile having a slot-level periodicity.

17. The method claim 16 , wherein the first SR resource profile is associated with Ultra Reliable Low Latency Communications (URLLC) and the second SR resource profile is associated with Enhanced Mobile Broadband (eMBB); and

receiving the indication by radio resource control (RRC) signaling, wherein the indication indicates dynamically configuring activation and deactivation of the first SR resource profile and the second SR resource profile.

18. The method claim 15 , wherein the activation and deactivation is dynamically configured through layer 1 (L1) or layer 2 (L2) signaling.

19. The method of claim 15 , wherein a periodicity of the one or more SR resources is configured with 3 or 4 symbol periodicities associated with a 12 symbol enhanced cyclic prefix (ECP), and the activation and deactivation of SR transmissions includes activating the one or more SR resources with 3 or 4 symbol periodicities, and deactivating SR transmission occasions of periodicities other than 3 or 4 symbol periodicities.

20. The method of claim 15 , further configured with a PUCCH comprising a SR transmission, wherein the method includes dropping the PUCCH comprising the SR transmission when a duration of the PUCCH exceeds a periodicity of the one or more SR resources.