IP Library › Granted Patent US 12,200,800
Granted Patent B2
US 12,200,800 · App. 18/613,163 · Granted Jan 14, 2025

Method and apparatus for supporting layer-2 mobility

Inventor: Soenghun Kim (Hanam-si, KR)
Assignees: BLACKPIN Inc.; Soenghun Kim; SIGNALIS CO., LTD.
H04W76/20H04W74/0833
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Quick Facts
Patent No.
US 12,200,800
App. No.
18/613,163
Granted
Jan 14, 2025
Kind
B2
Abstract

A method may comprise receiving, from a base station, at least one Radio Resource Control (RRC) message. The at least one RRC message may comprise: first configuration information associated with at least one first cell; and second configuration information associated with at least one second cell. The method may comprise while the first configuration information and the second configuration information are configured for the wireless device: performing, based on the second configuration information, wireless communication via at least one cell of the at least one second cell; receiving a first Medium Access Control (MAC) Control Element (CE), wherein the first MAC CE comprises an identifier associated with the first configuration information; and based on the first MAC CE, performing, using at least one parameter of the first configuration information, wireless communication via at least one cell of the at least one first cell.

Claims (72)

1. A wireless device comprising:

a wireless transceiver;

at least one processor; and

a memory storing instructions that, when executed by the at least one processor, cause the wireless device to:

receive, from a base station, at least one Radio Resource Control (RRC) message, wherein the at least one RRC message comprises:

first configuration information associated with at least one first cell; and

second configuration information associated with at least one second cell;

perform, based on the second configuration information, a random access associated with at least one cell of the at least one second cell;

receive, from the base station, a first Medium Access Control (MAC) Control Element (CE), wherein the first MAC CE comprises an identifier associated with the first configuration information; and

based on a field in the first MAC CE:

perform, based on the first configuration information, a random access associated with at least one cell of the at least one first cell; or

apply an uplink timing advance,

wherein a first value of the field in the first MAC CE is configured to indicate the random access associated with at least one cell of the at least one first cell, and

wherein a second value of the field in the first MAC CE is configured to indicate the uplink timing advance.

2. The wireless device of claim 1 , wherein the instructions, when executed by the at least one processor, cause the wireless device to apply the uplink timing advance by:

based on the field in the first MAC CE indicating the second value, applying the uplink timing advance without initiating a random access.

3. The wireless device of claim 1 , wherein the field in the first MAC CE is a field configured to indicate whether to skip the random access associated with at least one cell of the at least one first cell.

4. The wireless device of claim 1 , wherein the instructions, when executed by the at least one processor, cause the wireless device to receive the first MAC CE by:

while the first configuration information and the second configuration information are configured for the wireless device, receiving the first MAC CE.

5. The wireless device of claim 4 , wherein the instructions, when executed by the at least one processor, cause the wireless device to apply, based on the first MAC CE, at least one parameter of the first configuration information, and

wherein the instructions, when executed by the at least one processor, cause the wireless device to apply the uplink timing advance by applying the uplink timing advance for uplink transmission associated with at least one cell of the at least one first cell.

6. The wireless device of claim 1 , wherein the at least one first cell is associated with a first layer-2 mobility group, and wherein the at least one second cell is associated with a second layer-2 mobility group.

7. The wireless device of claim 6 , wherein the instructions, when executed by the at least one processor, cause the wireless device to receive the first MAC CE by:

while the first configuration information and the second configuration information are configured for the wireless device:

receiving the first MAC CE; and

switching, based on the first MAC CE, from the second layer-2 mobility group to the first layer-2 mobility group.

8. The wireless device of claim 7 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

while the first configuration information and the second configuration information are configured for the wireless device:

receive a second MAC CE, wherein the second MAC CE comprises an identifier associated with the second configuration information; and

switch, based on the second MAC CE, from the first layer-2 mobility group to the second layer-2 mobility group.

9. The wireless device of claim 1 , wherein the instructions, when executed by the at least one processor, cause the wireless device to receive the at least one RRC message by:

receiving, from the base station, a first RRC message, wherein the first RRC message comprises the first configuration information; and

receiving, from the base station, a second RRC message, wherein the second RRC message comprises the second configuration information.

10. The wireless device of claim 1 , wherein, based on the field in the first MAC CE indicating the second value, the random access associated with at least one cell of the at least one first cell is not initiated, and

wherein the second value of the field in the first MAC CE indicates a timing advance value.

11. A wireless device comprising:

a wireless transceiver;

at least one processor; and

a memory storing instructions that, when executed by the at least one processor, cause the wireless device to:

receive, from a base station, at least one Radio Resource Control (RRC) message, wherein the at least one RRC message comprises:

first configuration information associated with at least one first cell; and

second configuration information associated with at least one second cell; and

while the first configuration information and the second configuration information are configured for the wireless device:

perform, based on the second configuration information, wireless communication via at least one cell of the at least one second cell;

receive a first Medium Access Control (MAC) Control Element (CE),

wherein the first MAC CE comprises:

an identifier associated with the first configuration information; and

a field configured to indicate an uplink timing advance that is applied without initiating a random access; and

based on the first MAC CE, perform, using at least one parameter of the first configuration information, wireless communication via at least one cell of the at least one first cell.

12. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

based on the field in the first MAC CE:

perform, based on the first configuration information, a random access associated with at least one cell of the at least one first cell; or

apply the uplink timing advance,

wherein a first value of the field in the first MAC CE is configured to indicate the random access associated with at least one cell of the at least one first cell, and

wherein a second value of the field in the first MAC CE is configured to indicate the uplink timing advance.

13. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

skip, based on a timing advance value of the field in the first MAC CE, a random access associated with at least one cell of the at least one first cell.

14. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

apply, based on a timing advance value of the field in the first MAC CE, the timing advance value for communication associated with at least one cell of the at least one first cell.

15. The wireless device of claim 14 , wherein the instructions, when executed by the at least one processor, cause the wireless device to apply the timing advance value by applying the timing advance value for uplink transmission associated with at least one cell of the at least one first cell.

16. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

switch, based on the identifier comprised in the first MAC CE, from the at least one cell of the at least one second cell to the at least one cell of the at least one first cell.

17. The wireless device of claim 11 , wherein the at least one first cell is associated with a first layer-2 mobility group, and wherein the at least one second cell is associated with a second layer-2 mobility group.

18. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to receive the at least one RRC message by:

receiving, from the base station, a first RRC message, wherein the first RRC message comprises the first configuration information; and

receiving, from the base station, a second RRC message, wherein the second RRC message comprises the second configuration information.

19. The wireless device of claim 11 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

while the first configuration information and the second configuration information are configured for the wireless device, switch, based on the first MAC CE, from at least one cell of the at least one second cell to at least one cell of the at least one first cell.

20. The wireless device of claim 19 , wherein the instructions, when executed by the at least one processor, cause the wireless device to:

while the first configuration information and the second configuration information are configured for the wireless device:

receive a second MAC CE, wherein the second MAC CE comprises an identifier associated with the second configuration information; and

switch, based on the second MAC CE, from at least one cell of the at least one first cell to at least one cell of the at least one second cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2025
From: SIGNALIS CO., LTD.
To: BLACKPIN INC.; KIM, SOENGHUN
Reel/Frame 070770/0679 →
Priority Claims (1)
KR 10-2022-0081876 · Jul 4, 2022 · national
Continuity (2)
Continuation 18217996 · Jul 3, 2023
Related Publication 20240237125A1 · Jul 11, 2024
References Cited (55)
US 11470654B2 · Deogun · 2022 [cited by examiner]
US 11791882B2 · Islam · 2023 [cited by examiner]
US 11856575B2 · Zhang · 2023 [cited by examiner]
US 11889565B2 · Deogun · 2024 [cited by examiner]
US 11997720B2 · Futaki · 2024 [cited by examiner]
US 20210195513A1 · Zhang et al. · 2021 [cited by applicant]
US 20230127160A1 · Khoshkholgh Dashtaki · 2023 [cited by examiner]
US 20230328672A1 · Damnjanovic · 2023 [cited by examiner]
US 20230345540A1 · Babaei · 2023 [cited by examiner]
US 20240032135A1 · Cheng · 2024 [cited by examiner]
US 20240049287A1 · Lee · 2024 [cited by examiner]
US 20240073899A1 · Zhang · 2024 [cited by examiner]
US 20240097742A1 · Ly · 2024 [cited by examiner]
US 20240137988A1 · Cheng · 2024 [cited by examiner]
WO 2022084955 · 2022 [cited by applicant]
Vivo, “Discussion on L1 L2-Centric Inter-Cell Mobility,” 3GPP TSG-RAN WG2 Meeting #114-e Electronic, R2-2104908, May 19-27, 2021. [cited by applicant]
Nokia et al., “Multi-cell support for multi-TRP and L1 mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Elbonia, R2-2104988, May 19-27, 2021. [cited by applicant]
Intel Corporation, “Further aspects on L1/L2-Centric Inter-Cell Mobility, ”3GPP TSG-RAN WG2 Meeting #114-e Electronic meeting, R2-2105026, May 19-27, 2021. [cited by applicant]
Intel Corporation, “Enhanced MAC CE for PDCCH in multi-TRP deployment, ”3GPP TSG-RAN WG2 Meeting #114-e Electronic meeting, R2-2105027, May 19-27, 2021. [cited by applicant]
OPPO, “Discussion on L1/2 centric mobility,” 3GPP TSG-RAN WG2 Meeting #112-3, 113-bis-E-meeting, R2-2105033, Apr. 12-20, 2021. [cited by applicant]
Apple, “L1/L2-centric inter-cell mobility,” 3GPP TSG-RAN WG2 Meeting #114 bis Electronic, E-meeting, R2-2105103, May 19-27, 2021. [cited by applicant]
MediaTek Inc., “Procedures of L1/L2-Centric Inter-Cell Mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2105294, May 19-27, 2021. [cited by applicant]
OPPO, “Discussion on RAN2 specification impacts of TRP-based BFR,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2105341, May 2021. [cited by applicant]
Qualcomm Incorporated, “L1/L2 Mobility Overview,” 3GPP TSG-RAN WG2 Meeting #114-e Electronic, R2-2105354, May 19-27, 2021. [cited by applicant]
Qualcomm Incorporated, “Responses to RAN1 LS for L1/L2 Mobility,” 3GPP TSG-RAN WG2 Meeting #114-e Electronic, R2-2105355, May 19-27, 2021. [cited by applicant]
CATT, “On Scenarios for L1/L2 mobility for FeMIMO,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2105621, May 19-27, 2021. [cited by applicant]
CATT, “Discussions on L1/L2 mobility for FeMIMO without serving cell change, ”3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2105622, May 19-27, 2021. [cited by applicant]
Xiaomi Communications, “Enhanced TCI State Indication for UE-specific PDCCH MAC CE,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, E-Meeting, R2-2105731, May 19-27, 2021. [cited by applicant]
Lenovo et al., “Discussion on the support of inter-cell multi-TRP operation,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, e-Meeting, R2-2105826, May 19-27, 2021. [cited by applicant]
Lenovo et al., “Discussion on the support of L1/L2 centric inter-cell mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, e-Meeting, R2-2105827, May 19-27, 2021. [cited by applicant]
ZTE Corporation et al., “Consideration on L1/L2 centric mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, e-Meeting, R2-2105857, May 19-27, 2021. [cited by applicant]
ZTE Corporation et al., “MAC CE enhancement to support two TCI states for PDCCH,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, R2-2105858, May 19-27, 2021. [cited by applicant]
Nokia et al., “Beam failure with mTRP, ”3GPP TSG-RAN WG2 Meeting #114 Electronic, Elbonia, R2-2105870, May 19-27, 2021. [cited by applicant]
Ericsson, “On the LS about Activating two TCI states with a MAC CE,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Electronic Meeting, R2-2105907, May 19-28, 2021. [cited by applicant]
Huawei et al., “L1/L2 centric-mobility: Multi-TRP,” 3GPP TSG-RAN WG2 Meeting #114-e Electronic, R2-2105991, May 19-27, 2021. [cited by applicant]
Huawei et al., “Handover-like mechanism for L1/L2-centric inter-cell mobility, ”3GPP TSG-RAN WG2 Meeting #114-e Electronic, R2-2105992, May 19-27, 2021. [cited by applicant]
Ericsson, “On L1/L2 centric inter-cell mobility,” 3GPP TSG-RAN WG2 Meeting #114-e Electronic meeting, R2-2105999, May 19-27, 2021. [cited by applicant]
LG Electronics Inc., “Potential RAN2 work for feMIMO,” 3GPP TSG-RAN WG2 Meeting #114 Electronic meeting, R2-2106295, May 19-27, 2021. [cited by applicant]
Samsung, “Summary of email discussion [Post113bis-e][061][feMIMO] InterCell mTRP and L1L2 mobility (Samsung),” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2106314, May 19-27, 2021. [cited by applicant]
Samsung, “LS Reply on TCI State Update for L1/L2-Centric Inter-Cell Mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2106315, May 19-27, 2021. [cited by applicant]
Samsung, “[AT 114-e][036][feMIMO] InterCell mTRP and L1/L2 mobility (Samsung), ” 3GPP TSG-RAN WG2 Meeting #114-e Electronic, Electronic Meeting, R2-2106664, May 19-27, 2021. [cited by applicant]
Samsung, “LS Reply on TCI State Update for L1/L2-Centric Inter-Cell Mobility,” 3GPP TSG-RAN WG2 Meeting #114 Electronic, Online, R2-2106768, May 19-27, 2021. [cited by applicant]
3GPP TS 38.300 V17.0.0 (Mar. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; NR and NG-RAN Overall Description; Stage 2(Release 17). [cited by applicant]
3GPP TS 38.321 V17.0.0 (Mar. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Medium Access Control (MAC) protocol specification (Release 17). [cited by applicant]
3GPP TS 38.331 V17.0.0 (Mar. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) protocol specification (Release 17). [cited by applicant]
3GPP TS 38.211 V17.2.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical channels and modulation (Release 17). [cited by applicant]
3GPP TS 38.212 V17.2.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Multiplexing and channel coding (Release 17). [cited by applicant]
3GPP TS 38.213 V17.2.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical layer procedures for control (Release 17). [cited by applicant]
3GPP TS 38.214 V17.2.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NR; Physical layer procedures for data (Release 17). [cited by applicant]
3GPP TS 38.413 V17.1.1 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NG-RAN; NG Application Protocol (NGAP) (Release 17). [cited by applicant]
3GPP TS 38.423 V17.1.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NG-RAN; Xn application protocol (XnAP) (Release 17). [cited by applicant]
3GPP TS 38.473 V17.1.0 (Jun. 2022); Technical Specification; 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; NG-RAN; F1 application protocol (F1AP) (Release 17). [cited by applicant]
International Search Report for International Patent Application No. PCT/KR2023/009360 dated Oct. 6, 2023. [cited by applicant]
Ericsson, “Open issues for user plane aspects of DAPS handover”, 3GPP TSG-RAN WG2 #109bis-e Tdoc, Elbonia, R2-2002590, Apr. 20-30, 2020. [cited by applicant]
Nokia et al., “Enhancements on Multi-beam Operation”, 3GPP TSG RAN WG1 #105e, e-Meeting, R1-2105273, May 10-27, 2021. [cited by applicant]