IP Library › Granted Patent US 12,538,374
Granted Patent B2
US 12,538,374 · App. 17/923,727 · Granted Jan 27, 2026

Method and apparatus for sidelink communication during fast MCG link recovery procedure

Inventors: Lianhai Wu (Chaoyang, CN); Jing Han (Chaoyang District, CN); Haiming Wang (Xicheng District, CN)
Assignee: Lenovo (Beijing) Ltd.
H04W76/19
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Quick Facts
Patent No.
US 12,538,374
App. No.
17/923,727
Granted
Jan 27, 2026
Kind
B2
Abstract

The present application relates to a method and an apparatus for sidelink communication during a fast master cell group (MCG) link recovery procedure. One embodiment of the subject application provides a method performed by a user equipment (UE), comprising: determining a radio link failure (RLF) of Master Cell Group (MCG) if one of the following conditions is met: a timer associated with physical layer problem for PCell expires; a random access problem for MCG; and a maximum number of retransmissions has been reached in MCG Radio Link Control (RLC); and initiating a fast MCG link recovery procedure and starting a timer associated with the fast MCG link recovery procedure, wherein the UE is configured with the timer associated with the fast MCG link recovery procedure and configured to transmit sidelink communication.

Claims (64)

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

receiving, from a network equipment (NE), first signaling configuring an exceptional pool of resources corresponding to a sidelink communication between the first UE and a second UE, wherein the first signaling comprises at least one of radio resource control (RRC) reconfiguration signaling or system information block SIB) signaling;

receiving, from the NE, second signaling configuring a timer associated with a fast master cell group (MCG) link recovery procedure;

determining a radio link failure (RLF) of a master cell group (MCG) based at least in part on one or more conditions, wherein the one or more conditions comprise:

an additional timer associated with a physical layer problem for primary cell expires;

a random access problem for the MCG; or

a maximum number of retransmissions being satisfied in an MCG radio link control (RLC);

initiating, based at least in part on determining the RLF of the MCG, a fast MCG link recovery procedure to indicate the RLF of the MCG;

starting the timer associated with the fast MCG link recovery procedure; and

transmitting, to the second UE and based at least in part on the timer associated with the fast MCG link recovery procedure running, data using a randomly selected resource from the exceptional pool of resources.

2 . The method of claim 1 , further comprising:

receiving, prior to expiry of the timer associated with the fast MCG link recovery procedure, additional RRC reconfiguration signaling comprising a handover command; and

stopping the timer associated with the fast MCG link recovery procedure in response to reception of the handover command.

3 . The method of claim 1 , wherein the data is associated with a sidelink logical channel, and wherein the data is transmitted based at least in part on a sidelink configured grant type 1 for the sidelink logical channel failing to be configured.

4 . The method of claim 1 , wherein the UE is in an RRC connected state, and wherein the first UE is configured with network scheduling for a new radio (NR) sidelink transmission.

5 . The method of claim 1 , wherein sidelink configured grant type 1 for a sidelink logical channel is configured, and wherein the method further comprises at least one of:

transmitting additional data associated with the sidelink logical channel using the sidelink configured grant type 1 if the timer associated with the fast MCG link recovery procedure is running;

transmitting the additional data associated with the sidelink logical channel using the sidelink configured grant type 1 if the timer associated with the fast MCG link recovery procedure is running and an additional exceptional pool of resources is not configured; or

transmitting the additional data based on random selection using the additional exceptional pool of resources if the timer associated with the fast MCG link recovery procedure is running and the additional exceptional pool is configured.

6 . The method of claim 1 , further comprising:

transmitting, to a master node (MN) via a secondary node (SN), an MCG failure information message comprising a result of a channel busy ratio (CBR) measurement;

maintaining one or more CBR measurement configurations after the fast MCG link recovery procedure is initiated;

performing the CBR measurement on transmission resources after the fast MCG link recovery procedure is initiated; and

transmitting the result of the CBR measurement to a network device based at least in part on a report comprising the result of the CBR measurement being triggered and the timer associated with the fast MCG link recovery procedure running.

7 . The method of claim 1 , further comprising:

stopping a channel busy ratio (CBR) measurement after the fast MCG link recovery procedure is initiated.

8 . A first user equipment (UE) for wireless communication, comprising:

at least one memory; and

at least one processor coupled with the at least one memory and operable to cause the first UE to:

receive, from a network equipment (NE), first signaling configuring an exceptional pool of resources corresponding to a sidelink communication between the first UE and a second UE, wherein the first signaling comprises at least one of radio resource control (RRC) reconfiguration signaling or system information block (SIB) signaling;

receive, from the NE, second signaling configuring a timer associated with a fast master cell group (MCG) link recovery procedure;

determine a radio link failure (RLF) of a master cell group (MCG) based at least in part on one or more conditions, wherein the one or more conditions comprise:

an additional timer associated with a physical layer problem for primary cell expires;

a random access problem for the MCG; or

a maximum number of retransmissions being satisfied in an MCG radio link control (RLC);

initiate, based at least in part on determining the RLF of the MCG, a fast MCG link recovery procedure to indicate the RLF of the MCG;

start the timer associated with the fast MCG link recovery procedure; and

transmit, to the second UE and based at least in part on the timer associated with the fast MCG link recovery procedure running, data using a randomly selected resource from the exceptional pool of resources.

9 . The first UE of claim 8 , wherein the sidelink communication is one of new radio (NR) sidelink communication using NR technology or vehicle to everything (V2X) sidelink communication using evolved universal terrestrial radio access (E-UTRA) technology.

10 . The first UE of claim 8 , wherein the at least one processor is further operable to cause the first UE to:

receive, prior to expiry of the timer associated with the fast MCG link recovery procedure, additional RRC reconfiguration signaling comprising a handover command; and

stop the timer associated with the fast MCG link recovery procedure in response to reception of the handover command.

11 . The first UE of claim 8 , wherein the data is associated with a sidelink logical channel, and wherein the data is transmitted based at least in part on a sidelink configured grant type 1 for the sidelink logical channel failing to be configured.

12 . The first UE of claim 8 , wherein the first UE is in RRC connected state, and wherein the first UE is configured with network scheduling for new radio (NR) sidelink transmission.

13 . The first UE of claim 8 , wherein sidelink configured grant type 1 for a sidelink logical channel is configured, and wherein the at least one processor is further operable to cause the first UE to at least one of:

transmit additional data associated with the sidelink logical channel using the sidelink configured grant type 1 if the timer associated with the fast MCG link recovery procedure is running;

transmit the additional data associated with the sidelink logical channel using the sidelink configured grant type 1 if the timer associated with the fast MCG link recovery procedure is running and an additional exceptional pool of resources is not configured; or

transmit the additional data based on random selection using the additional exceptional pool of resources if the timer associated with the fast MCG link recovery procedure is running and the additional exceptional pool is configured.

14 . The first UE of claim 8 , wherein the at least one processor is further operable to cause the first UE to:

transmit, to a master node (MN) via a secondary node (SN), an MCG failure information message comprising a result of a channel busy ratio (CBR) measurement;

maintain one or more CBR measurement configurations after the fast MCG link recovery procedure is initiated;

perform the CBR measurement on transmission resources after the fast MCG link recovery procedure is initiated; and

transmit the result of the CBR measurement to a network device based at least in part on a report comprising the result of the CBR measurement being triggered and the timer associated with the fast MCG link recovery procedure running.

15 . The first UE of claim 8 , wherein the at least one processor is further operable to cause the first UE to stop a channel busy ratio (CBR) measurement after the fast MCG link recovery procedure is initiated.

16 . A network equipment (NE) for wireless communication, comprising:

at least one memory; and

at least one processor coupled with the at least one memory and operable to cause the NE to:

transmit, to a first user equipment (UE), first signaling configuring an exceptional pool of resources corresponding to a sidelink communication between the first UE and a second UE, wherein the first signaling comprises at least one of radio resource control (RRC) reconfiguration signaling or system information block (SIB) signaling; and

transmit, to the first UE, second signaling configuring a timer associated with a fast master cell group (MCG) link recovery procedure), wherein the timer is initiated based at least in part on a radio link failure (RLF) of an MCG, and wherein the sidelink communication is performed using a randomly selected resource from the exceptional pool of resources based at least in part on the timer associated with the fast MCG link recovery procedure running.

17 . The NE of claim 16 , wherein the at least one processor is further operable to cause the NE to receive an MCG failure information message including a result of a channel busy ratio (CBR) measurement from the first UE.

18 . The NE of claim 16 , wherein the at least one processor is further operable to cause the apparatus to reconfigure the NE to transmit third signaling configuring one or more parameters for the sidelink communication based at least in part on the timer associated with the fast MCG link recovery procedure running.

19 . A method performed by a network equipment (NE), the method comprising:

transmitting, to a first user equipment (UE), first signaling configuring an exceptional pool of resources corresponding to a sidelink communication between the first UE and a second UE, wherein the first signaling comprises at least one of radio resource control (RRC) reconfiguration signaling or system information block (SIB) signaling; and

transmitting, to the first UE, second signaling configuring a timer associated with a fast master cell group (MCG) link recovery procedure, wherein the timer is initiated based at least in part on a radio link failure (RLF) of an MCG, and wherein the sidelink communication is performed using a randomly selected resource from the exceptional pool of resources based at least in part on the timer associated with the fast MCG link recovery procedure running.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2022
From: WU, LIANHAI; HAN, JING; WANG, HAIMING
To: LENOVO (BEIJING) LIMITED
Reel/Frame 061759/0642 →
Continuity (1)
Related Publication 20230180329A1 · Jun 8, 2023
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