IP Library Granted Patent US 12,089,184
Granted Patent B2
US 12,089,184 · App. 17/195,669 · Granted Sep 10, 2024

Method and device used for wireless communication with discontinuous reception

Inventor: Xiaobo Zhang (Shanghai, CN)
Assignee: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
H04W72/02H04W24/08H04W24/10H04W72/0446H04W72/0453H04W76/27
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Quick Facts
Patent No.
US 12,089,184
App. No.
17/195,669
Granted
Sep 10, 2024
Kind
B2
Abstract

The present disclosure provides a method and device used for wireless communications with discontinuous reception. A first node receives first information, and the first information is used for determining an active time in a first time-resource pool; monitors a target signaling in a first time-resource sub-pool; and transmits a first radio signal in a first time-frequency resource block; wherein a first parameter set is used for determining the first time-frequency resource block, the first time-resource sub-pool belongs to the active time in the first time-resource pool, and the first parameter set is one of a first candidate parameter set or a second candidate parameter set; the first candidate parameter set is determined based on a measurement performed in the first time-resource sub-pool. The present disclosure considers the influence of discontinuous reception on resource election, which can improve chances of successful transmission.

Claims (44)

1. A first node for wireless communications, comprising:

a first receiver, receiving first information, the first information being used for determining an active time in a first time-resource pool; monitoring a target signaling in a first time-resource sub-pool; and

a first transmitter, transmitting a first radio signal in a first time-frequency resource block;

wherein a first parameter set is used for determining the first time-frequency resource block, the first time-resource sub-pool belongs to the active time in the first time-resource pool, and the first parameter set is one of a first candidate parameter set or a second candidate parameter set; the first candidate parameter set is determined based on a measurement performed in the first time-resource sub-pool; the second candidate parameter set is determined based on a measurement performed in a second time-resource sub-pool, and at least one slot in the second time-resource sub-pool is prior to the first time-resource sub-pool; and a length of the first time-resource sub-pool is used for determining the first parameter set out of the first candidate parameter set and the second candidate parameter set.

2. The first node according to claim 1 , comprising:

maintaining a first timer;

wherein the active time in the first time-resource pool comprises a time when the first timer is running.

3. The first node according to claim 1 , comprising:

the active time in the first time-resource pool comprising a Downlink reception time;

wherein the first radio signal is transmitted on a Sidelink.

4. The first node according to claim 1 ,

wherein the first candidate parameter set and the second parameter set both comprise available time-frequency resources.

5. The first node according to claim 1 , wherein when the length of the first time-resource sub-pool is greater than a first threshold, the first parameter set is determined out of the first candidate parameter set; and when the length of the first time-resource sub-pool is less than the first threshold, the first parameter set is determined out of the second candidate parameter set.

6. The first node according to claim 5 , wherein the first threshold is carried in all or part of IEs in a Radio Resource Control (RRC) signaling.

7. The first node according to claim 1 , wherein the target signaling is Sidelink Control Information (SCI).

8. The first node according to claim 4 , wherein a time length of the second time-resource sub-pool is greater than a time length of the first time-resource sub-pool.

9. A second node for wireless communications, comprising:

a second transmitter, transmitting first information, the first information indicating an active time in a first time-resource pool;

wherein

a first parameter set is used for determining the first time-frequency resource block by the receiver of the first information, the first time-resource sub-pool belongs to the active time in the first time-resource pool, and the first parameter set is one of a first candidate parameter set or a second candidate parameter set;

the first candidate parameter set is determined based on a measurement performed in the first time-resource sub-pool by the receiver of the first information;

the second candidate parameter set is determined based on a measurement performed in a second time-resource sub-pool by the receiver of the first information;

at least one slot in the second time-resource sub-pool is prior to the first time-resource sub-pool; and

a length of the first time-resource sub-pool is used for determining the first parameter set out of the first candidate parameter set and the second candidate parameter set by the receiver of the first information.

10. The second node according to claim 9 , wherein

a first timer is maintained by the receiver of the first information;

the active time in the first time-resource pool comprises a time when the first timer is running.

11. The second node according to claim 9 , wherein

the active time in the first time-resource pool comprises a Downlink transmission time;

the first radio signal is transmitted on a Sidelink.

12. The second node according to claim 9 ,

wherein the first candidate parameter set and the second parameter set both comprise available time-frequency resources.

13. The second node according to claim 9 , wherein when the length of the first time-resource sub-pool is greater than a first threshold, the first parameter set is determined out of the first candidate parameter set; and when the length of the first time-resource sub-pool is less than a first threshold, the first parameter set is determined out of the second candidate parameter set.

14. The second node according to claim 13 , wherein the first threshold is carried in all or part of IEs in an RRC signaling.

15. The second node according to claim 9 , wherein the target signaling is SCI.

16. The second node according to claim 12 , wherein a time length of the second time-resource sub-pool is greater than a time length of the first time-resource sub-pool.

17. A method in a first node for wireless communications, comprising:

receiving first information, the first information being used for determining an active time in a first time-resource pool; monitoring a target signaling in a first time-resource sub-pool; and

transmitting a first radio signal in a first time-frequency resource block;

wherein a first parameter set is used for determining the first time-frequency resource block, the first time-resource sub-pool belongs to the active time in the first time-resource pool, and the first parameter set is one of a first candidate parameter set or a second candidate parameter set; the first candidate parameter set is determined based on a measurement performed in the first time-resource sub-pool; the second candidate parameter set is determined based on a measurement performed in a second time-resource sub-pool, and at least one slot in the second time-resource sub-pool is prior to the first time-resource sub-pool; and a length of the first time-resource sub-pool is used for determining the first parameter set out of the first candidate parameter set and the second candidate parameter set.

18. The method in a first node according to claim 17 ,

wherein the first candidate parameter set and the second parameter set both comprise available time-frequency resources.

19. The method in a first node according to claim 17 , wherein when the length of the first time-resource sub-pool is greater than a first threshold, the first parameter set is determined out of the first candidate parameter set; and when the length of the first time-resource sub-pool is less than a first threshold, the first parameter set is determined out of the second candidate parameter set.

20. The method in a first node according to claim 18 , wherein a time length of the second time-resource sub-pool is greater than a time length of the first time-resource sub-pool.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2024
From: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY CO., LTD.
To: BUNKER HILL TECHNOLOGIES LLC
Reel/Frame 069352/0528 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2022
From: ZHANG, XIAOBO
To: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
Reel/Frame 060776/0256 →
Priority Claims (2)
CN 202010047946.9 · Jan 16, 2020 · national
CN 202011494836.3 · Dec 17, 2020 · national
Continuity (2)
Continuation PCTCN2020142081 · Dec 31, 2020
Related Publication 20210227506A1 · Jul 22, 2021