IP Library Granted Patent US 12,604,366
Granted Patent B2
US 12,604,366 · App. 18/121,082 · Granted Apr 14, 2026

Multicast service delivery for use in inactive state

Inventor: Alireza Babaei (Fairfax, VA)
H04W76/40H04W76/27H04W74/0833H04W74/0836H04W74/0838
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Quick Facts
Patent No.
US 12,604,366
App. No.
18/121,082
Granted
Apr 14, 2026
Kind
B2
Abstract

A method of multicast data delivery in a radio resource control (RRC) inactive state includes receiving, by a user equipment (UE) in an RRC connected state, an RRC release message indicating transitioning of the UE from the RRC connected state to an RRC inactive state and receiving, while in the RRC inactive state, multicast data in response to joining a multicast group and receiving multicast configuration parameters.

Claims (48)

1 . A method of multicast data delivery in a radio resource control (RRC) inactive state, comprising the steps of:

receiving, by a user equipment (UE) in an RRC connected state, an RRC release message indicating transitioning of the UE from the RRC connected state to an RRC inactive state; and

receiving, while in the RRC inactive state, multicast data in response to joining a multicast group and receiving multicast configuration parameters,

wherein the multicast configuration parameters are conveyed in the RRC release message and comprise a first set of parameters for multicast reception in the RRC connected state and a second set of parameters for multicast reception in the RRC inactive state, the second set of parameters including paging occasion information and semi-persistent scheduling information for multicast reception in the RRC inactive state.

2 . The method of claim 1 , further comprising, while in the radio resource control (RRC) connected state and before receiving the RRC release message, the user equipment (UE):

joining the multicast group; and

receiving the multicast configuration parameters.

3 . The method of claim 1 , wherein the multicast configuration parameters comprise first multicast configuration parameters for multicast data reception during the radio resource control (RRC) connected state and second multicast configuration parameters for multicast data reception during the radio resource control (RRC) inactive state.

4 . The method of claim 1 , further comprising, while in the radio resource control (RRC) inactive state and after receiving the RRC release message, the user equipment (UE):

joining the multicast group; or

receiving the multicast configuration parameters; or

both.

5 . The method of claim 4 , wherein:

joining the multicast group occurs while the user equipment (UE) in the radio resource control (RRC) inactive state; and

the UE receiving the multicast configuration parameters after transitioning to the RRC connected state.

6 . The method of claim 4 , wherein joining the multicast group, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a random access process.

7 . The method of claim 6 , wherein joining the multicast group via a message A (MsgA) of a two-step random access process or a message 3 (Msg3) of a four-step random access process.

8 . The method of claim 6 , wherein the radio resource control (RRC) release message comprises one or more configuration parameters for the random access process.

9 . The method of claim 6 , wherein receiving the multicast configuration parameters, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on the random access process.

10 . The method of claim 4 , wherein receiving the multicast configuration parameters, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a pre-configured downlink assignment in the RRC inactive state.

11 . The method of claim 10 , further comprising the user equipment (UE) receiving a downlink transport block, comprising the multicast configuration parameters, based on the pre-configured downlink assignment.

12 . The method of claim 4 , wherein receiving the multicast configuration parameters, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a semi-persistent scheduling (SPS) downlink assignment in the RRC inactive state.

13 . The method of claim 12 , wherein the radio resource control (RRC) release message comprises semi-persistent scheduling (SPS) configuration parameters.

14 . The method of claim 13 , further comprising determining the semi-persistent scheduling (SPS) downlink assignment based on the SPS configuration parameters.

15 . A method of multicast data delivery in a radio resource control (RRC) inactive state, comprising the steps of:

receiving, by a user equipment (UE) in an RRC connected state, an RRC release message indicating transitioning of the UE from the RRC connected state to an RRC inactive state; and

receiving, while in the RRC inactive state, multicast data in response to joining a multicast group and receiving multicast configuration parameters;

wherein, while in the radio resource control (RRC) inactive state and after receiving the RRC release message, the user equipment (UE):

joining the multicast group; or

receiving the multicast configuration parameters, or both:

wherein joining the multicast group, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a random access process,

wherein receiving the multicast configuration parameters, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on the random access process, and

wherein receiving the multicast configuration parameters, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a message B (MsgB) of a two-step random access process or a message 4 (Msg4) of a four-step random access process.

16 . A method of multicast data delivery in a radio resource control (RRC) inactive state, comprising the steps of:

receiving, by a user equipment (UE) in an RRC connected state, an RRC release message indicating transitioning of the UE from the RRC connected state to an RRC inactive state; and

receiving, while in the RRC inactive state, multicast data in response to joining a multicast group and receiving multicast configuration parameters;

wherein, while in the radio resource control (RRC) inactive state and after receiving the RRC release message, the user equipment (UE):

joining the multicast group; or

receiving the multicast configuration parameters; or

both; and

wherein joining the multicast group, while the user equipment (UE) is in the radio resource control (RRC) inactive state, occurs based on a configured grant.

17 . The method of claim 16 , further comprising transmitting a transport block, via radio resources of the configured grant, the transport block indicating the request to join the multicast group.

18 . The method of claim 16 , wherein the radio resource control (RRC) release message comprises configured grant configuration parameters.

19 . The method of claim 18 , further comprising determining the configured grant based on the configured grant configuration parameters.

20 . A method of multicast data delivery in a radio resource control (RRC) inactive state, comprising the steps of:

receiving, by a user equipment (UE) in an RRC connected state, an RRC release message indicating transitioning of the UE from the RRC connected state to an RRC inactive state the RRC release message further conveying multicast configuration parameters; and

in response to joining a multicast group, determining a bandwidth part (BWP) for reception of paging information and multicast data during the RRC inactive state based on the multicast configuration parameters conveyed in the RRC release message, the multicast configuration parameters including paging occasion information and semi-persistent scheduling information for multicast reception in the RRC inactive state; and

receiving the paging information and the multicast data via the determined BWP.

Continuity (2)
Provisional Application 63321547 · Mar 18, 2022
Related Publication 20230328843A1 · Oct 12, 2023
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