IP Library Granted Patent US 11,032,864
Granted Patent B2
US 11,032,864 · App. 16/985,608 · Granted Jun 8, 2021

Method and apparatus for handling multiple sidelink communication in a wireless communication system

Inventors: Yi-Hsuan Kung (Taipei, TW); Li-Chih Tseng (Taipei, TW); Chun-Wei Huang (Taipei, TW); Ming-Che Li (Taipei, TW); Li-Te Pan (Taipei, TW)
Assignee: ASUSTek Computer Inc.
H04W76/18H04W28/0278H04W28/26H04W72/1257H04W80/02H04W92/18
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Quick Facts
Patent No.
US 11,032,864
App. No.
16/985,608
Filed
Aug 5, 2020
Granted
Jun 8, 2021
Kind
B2
Art Unit
2478
USPC
370/329
Abstract

A method and device are disclosed from the perspective of a first device handling radio link failure. In one method, the method includes the first device performing or establishing sidelink unicast communication with a second device. The method also includes the first device performing or establishing sidelink unicast communication with a third device. The method also includes the first device detecting a radio link failure associated with the second device. The method further includes the first device performing a Sidelink MAC reset associated with the second device in response to the radio link failure, and not performing a Sidelink MAC reset associated with the third device.

Claims (42)

1. A method of a first device handling radio link failure, comprising:

performing or establishing sidelink unicast communication with a second device, wherein the first device uses a Sidelink Medium Access Control (MAC) entity for the sidelink unicast communication with the second device;

performing or establishing sidelink unicast communication with a third device, wherein the first device uses the Sidelink MAC entity for the sidelink unicast communication with the third device;

detecting a radio link failure associated with the second device;

cancelling pending Scheduling Requests (SRs) and/or Buffer Status Reports (BSRs) associated with the second device in response to the radio link failure, and not cancelling pending SR and/or BSRs associated with the third device in response to the radio link failure; and

flushing soft buffer associated with the sidelink unicast communication with the second device in response to the radio link failure, and not flushing soft buffer associated with the sidelink unicast communication with the third device in response to the radio link failure.

2. The method of claim 1 , wherein the first device stops sidelink transmission and/or reception associated with the second device in response to the radio link failure, and does not stop sidelink transmission and/or reception associated with the third device in response to the radio link failure, wherein the sidelink transmission and/or reception includes PSSCH (Physical Sidelink Shared Channel), PSCCH (Physical Sidelink Control Channel), and/or PSFCH (Physical Sidelink Feedback Channel) transmission or reception.

3. A method of a first device handling radio link failure, comprising:

performing or establishing sidelink unicast communication with a second device, wherein the first device uses a Sidelink Medium Access Control (MAC) entity for the sidelink unicast communication with the second device;

performing or establishing sidelink unicast communication with a third device, wherein the first device uses the Sidelink MAC entity for the sidelink unicast communication with the third device;

detecting a radio link failure associated with the second device; and

flushing soft buffer associated with the sidelink unicast communication with the second device in response to the radio link failure, and not flushing soft buffer associated with the sidelink unicast communication with the third device in response to the radio link failure.

4. The method of claim 3 , wherein the first device cancels pending Scheduling Requests (SRs) and/or Buffer Status Reports (BSRs) associated with the second device in response to the radio link failure, and does not cancel pending SR and/or BSRs associated with the third device in response to the radio link failure.

5. The method of claim 3 , wherein the first device stops sidelink transmission and/or reception associated with the second device in response to the radio link failure, and does not stop sidelink transmission and/or reception associated with the third device in response to the radio link failure, wherein the sidelink transmission or reception includes PSSCH (Physical Sidelink Shared Channel), PSCCH (Physical Sidelink Control Channel), and/or PSFCH (Physical Sidelink Feedback Channel) transmission or reception.

6. The method of claim 3 , wherein the first device releases sidelink unicast resources associated with the second device scheduled by a network or reserved by the first device in response to the radio link failure.

7. A first device handling radio link failure, comprising:

a control circuit;

a processor installed in the control circuit; and

a memory installed in the control circuit and operatively coupled to the processor;

wherein the processor is configured to execute a program code stored in the memory to:

perform or establish sidelink unicast communication with a second device, wherein the first device uses a Sidelink Medium Access Control (MAC) entity for the sidelink unicast communication with the second device;

perform or establish sidelink unicast communication with a third device, wherein the first device uses the Sidelink MAC entity for the sidelink unicast communication with the third device;

detect a radio link failure associated with the second device;

cancel pending Scheduling Requests (SRs) and/or Buffer Status Reports (BSRs) associated with the second device in response to the radio link failure, and not cancel pending SR and/or BSRs associated with the third device in response to the radio link failure; and

flush soft buffer associated with the sidelink unicast communication with the second device in response to the radio link failure, and not flush soft buffer associated with the sidelink unicast communication with the third device in response to the radio link failure.

8. The first device of claim 7 , wherein the processor is further configured to execute a program code stored in the memory to:

stop sidelink transmission and/or reception associated with the second device in response to the radio link failure, and not stop sidelink transmission and/or reception associated with the third device in response to the radio link failure, wherein the sidelink transmission and/or reception includes PSSCH (Physical Sidelink Shared Channel), PSCCH (Physical Sidelink Control Channel), and/or PSFCH (Physical Sidelink Feedback Channel) transmission or reception.

9. A first device handling radio link failure, comprising:

a control circuit;

a processor installed in the control circuit; and

a memory installed in the control circuit and operatively coupled to the processor;

wherein the processor is configured to execute a program code stored in the memory to:

perform or establish sidelink unicast communication with a second device, wherein the first device uses a Sidelink Medium Access Control (MAC) entity for the sidelink unicast communication with the second device;

perform or establish sidelink unicast communication with a third device, wherein the first device uses the Sidelink MAC entity for the sidelink unicast communication with the third device;

detect a radio link failure associated with the second device; and

flush soft buffer associated with the sidelink unicast communication with the second device in response to the radio link failure, and not flush soft buffer associated with the sidelink unicast communication with the third device in response to the radio link failure.

10. The first device of claim 9 , wherein the processor is further configured to execute a program code stored in the memory to:

cancel pending Scheduling Requests (SRs) and/or Buffer Status Reports (BSRs) associated with the second device in response to the radio link failure, and not cancel pending SR and/or BSRs associated with the third device in response to the radio link failure.

11. The first device of claim 9 , wherein the processor is further configured to execute a program code stored in the memory to:

stop sidelink transmission and/or reception associated with the second device in response to the radio link failure, and not stop sidelink transmission and/or reception associated with the third device in response to the radio link failure, wherein the sidelink transmission or reception includes PSSCH (Physical Sidelink Shared Channel), PSCCH (Physical Sidelink Control Channel), and/or PSFCH (Physical Sidelink Feedback Channel) transmission or reception.

12. The first device of claim 9 , wherein the processor is further configured to execute a program code stored in the memory to:

release sidelink unicast resources associated with the second device scheduled by a network or reserved by the first device in response to the radio link failure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2020
From: KUNG, YI-HSUAN; TSENG, LI-CHIH; HUANG, CHUN-WEI; LI, MING-CHE; PAN, LI-TE
To: ASUSTEK COMPUTER INC.
Reel/Frame 053407/0732 →
Continuity (2)
Provisional Application 62884365 · Aug 8, 2019
Related Publication 20210045178A1 · Feb 11, 2021