IP Library Granted Patent US 12,526,716
Granted Patent B2
US 12,526,716 · App. 18/198,851 · Granted Jan 13, 2026

Method and device for reporting beam failure recovery information

Inventors: Yu Chen (Shanghai, CN); Xiaobo Zhang (Shanghai, CN)
Assignee: Apogee Networks, LLC
H04W36/305H04W72/54
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,526,716
App. No.
18/198,851
Granted
Jan 13, 2026
Kind
B2
Abstract

Method and device for wireless communications, comprising evaluating first-type radio link quality according to a first reference signal set, whenever the evaluated first-type radio link quality is worse than a first threshold, a first counter being increased by 1, the first counter being greater than or equal to a first value being used to trigger a first beam failure recovery; evaluating second-type radio link quality according to a second reference signal set, whenever the evaluated second-type radio link quality is worse than a second threshold, a second counter being increased by 1, the second counter being greater than or equal to a second value being used to trigger a second beam failure recovery; the first reference signal set and the second reference signal set at least comprising one reference signal resource respectively; the method proposed in the present application can realize beam failure recovery in the case of multi-transmission point.

Claims (32)

1 . A User Equipment (UE) comprising:

a processor and a receiver configured to evaluate a first-type radio link quality associated with a first reference signal set, wherein, when the first-type radio link quality is worse than a first threshold, a first counter is increased, wherein a first beam failure recovery (BFR) is triggered when the first counter is greater than or equal to a first value;

the processor and the receiver configured to evaluate a second-type radio link quality associated with a second reference signal set, wherein, when the second-type radio link quality is worse than a second threshold, increase a second counter, wherein a second BFR is triggered when the second counter is greater than or equal to a second value,

wherein the first reference signal set and the second reference signal set at least comprise one reference signal resource respectively, wherein any reference signal resource in the first reference signal set and any reference signal resource in the second reference signal set are not Quasi Co-Located (QCLed); and

the processor and a transmitter configured to, in response to at least one of the first BFR or the second BFR being triggered, transmit a Medium Access Control (MAC) Control Element (MAC-CE) comprising a bitmap, first BFR information and second BFR information, wherein a bit in the bitmap indicates a beam failure detection result, wherein at least one of the first BFR information or the second BFR information is associated with the bitmap, wherein the first BFR information indicates a first candidate reference signal resource for the first BFR, and the second BFR information indicates a second candidate reference signal resource for the second BFR,

wherein the first candidate reference signal resource and the second candidate reference signal resource are different, and

wherein both the first BFR and the second BFR are associated with a Special Cell (SpCell) wherein a position of the second BFR information in the MAC-CE is related to whether a cell that the second BFR information is associated with belongs to an SpCell, and wherein a logical channel Identity (ID) of the MAC-CE identifies the MAC-CE as one of: a BFR one octet Ci MAC-CE, a Truncated BFR one octet Ci MAC-CE, a BFR four octets Ci MAC-CE, or a Truncated BFR four octets Ci MAC-CE.

2 . The UE of claim 1 , wherein the MAC-CE comprises one or more octets, each octet comprising 8 bits, wherein the first BFR information is associated with a first octet or information carried by the first octet, wherein the second BFR information is associated with a second octet or information carried by the second octet, wherein an AC field of the second octet is used to indicate an occurrence or existence of a second candidate reference signal index, wherein the AC field of the second octet is used to indicate that bits of a second candidate field are not all 0, wherein a second most significant bit of the second octet indicates that the second BFR is associated with the second reference signal set, wherein the second candidate field indicates a second candidate reference signal index, and wherein the second candidate reference signal index is used to identify the second candidate reference signal resource.

3 . The UE of claim 2 , wherein an AC field of the first octet is used to indicate an occurrence or existence of a first candidate field, wherein the first candidate field indicates a first candidate reference signal index, and wherein the first candidate reference signal index is used to identify the first candidate reference signal resource.

4 . The UE of claim 3 , wherein a most significant bit of the second octet is an AC field, wherein the second octet comprises the second candidate field, and wherein the second octet comprises 6 bits.

5 . The UE of claim 3 , wherein a second most significant bit of the second octet is set to 1.

6 . The UE of claim 3 ,

wherein the processor and the receiver are configured to receive a signaling, the signaling being used to configure a cell group, wherein the signaling indicates one of a first Physical Cell Identifier (PCI) or a second PCI, wherein a cell corresponding to any bit in the first bitmap belongs to the cell group,

wherein the first reference signal set is associated with the first PCI, wherein the second reference signal set is associated with the second PCI.

7 . The UE of claim 1 , wherein the first reference signal set and the second reference signal set are respectively associated with different PCIs.

8 . The UE of claim 7 , wherein the first BFR and the second BFR are associated with a same cell.

9 . The UE of claim 8 , wherein a bit in the bitmap corresponding to a cell index of the same cell is set to 1.

10 . The UE of claim 1 , wherein the first BFR information is used to determine a value of a first at least one bit in the bitmap, wherein the second BFR information is used to determine a value of a second at least one bit in the bitmap, wherein any bit in the bitmap corresponds to a group of reference signal resources or an index of reference signal resources.

11 . A method performed by a User Equipment (UE), the method comprising:

evaluating a first-type radio link quality associated with a first reference signal set, wherein, when the first-type radio link quality is worse than a first threshold, a first counter is increased, wherein a first beam failure recovery (BFR) is triggered when the first counter is greater than or equal to a first value;

evaluating a second-type radio link quality associated with a second reference signal set, wherein, when the second-type radio link quality is worse than a second threshold, increasing a second counter, wherein a second BFR is triggered when the second counter is greater than or equal to a second value, wherein the first reference signal set and the second reference signal set at least comprise one reference signal resource respectively, wherein any reference signal resource in the first reference signal set and any reference signal resource in the second reference signal set are not Quasi Co-Located (QCLed); and

in response to at least one of the first BFR or the second BFR being triggered, transmitting a Medium Access Control (MAC) Control Element (MAC-CE) comprising a bitmap, first BFR information, and second BFR information, wherein a bit in the bitmap indicates a beam failure detection result, wherein at least one of the first BFR information or the second BFR information is associated with the bitmap, wherein the first BFR information indicates a first candidate reference signal resource for the first BFR, and the second BFR information indicates a second candidate reference signal resource for the second BFR,

wherein the first candidate reference signal resource and the second candidate reference signal resource are different, wherein both the first beam failure recovery and the second beam failure recovery are associated with a Special Cell (SpCell), wherein a position of the second beam failure recovery information in the MAC-CE is related to whether a cell that the second BFR information is associated with belongs to an SpCell, and wherein a logical channel Identity (ID) of the MAC-CE identifies the MAC-CE as one of: a BFR one octet Ci MAC-CE, a Truncated BFR one octet Ci MAC-CE, a BFR four octets Ci MAC-CE, or a Truncated BFR four octets Ci MAC-CE.

12 . The method of claim 11 , wherein the MAC-CE comprises one or more octets, each octet comprising 8 bits, wherein the first BFR information is associated with a first octet or information carried by the first octet, wherein the second BFR information is associated with a second octet or information carried by the second octet, wherein an AC field of the second octet is used to indicate an occurrence or existence of a second candidate reference signal index, wherein the AC field of the second octet is used to indicate that bits of a second candidate field are not all 0, wherein a second most significant bit of the second octet indicates that the second BFR is associated with the second reference signal set, wherein the second candidate field indicates a second candidate reference signal index, and wherein the second candidate reference signal index is used to identify the second candidate reference signal resource.

13 . The method of claim 12 , wherein an AC field of the first octet is used to indicate an occurrence or existence of a first candidate field, wherein the first candidate field indicates a first candidate reference signal index, and wherein the first candidate reference signal index is used to identify the first candidate reference signal resource.

14 . The method of claim 13 , wherein a most significant bit of the second octet is an AC field, wherein the second octet comprises the second candidate field, and wherein the second octet comprises 6 bits.

15 . The method of claim 13 , wherein a second most significant bit of the second octet is set to 1.

16 . The method of claim 13 , further comprising receiving a signaling, the signaling being used to configure a cell group, wherein the signaling indicates one of a first Physical Cell Identifier (PCI) or a second PCI, wherein a cell corresponding to any bit in the bitmap belongs to the cell group, wherein the first reference signal set is associated with the first PCI, and wherein the second reference signal set is associated with the second PCI.

17 . The method of claim 11 , wherein the first reference signal set and the second reference signal set are respectively associated with different PCIs.

18 . The method of claim 17 , wherein the first BFR and the second BFR are associated with a same cell.

19 . The method of claim 18 , wherein a bit in the bitmap corresponding to a cell index of the same cell is set to 1.

20 . The method of claim 11 , wherein the first BFR information is used to determine a value of a first at least one bit in the bitmap, wherein the second BFR information is used to determine a value of a second at least one bit in the bitmap, wherein any bit in the bitmap corresponds to a group of reference signal resources or an index of reference signal resources.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2025
From: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
To: APOGEE NETWORKS, LLC
Reel/Frame 070741/0575 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2024
From: CHEN, YU; ZHANG, XIAOBO
To: SHANGHAI LANGBO COMMUNICATION TECHNOLOGY COMPANY LIMITED
Reel/Frame 067068/0871 →
Priority Claims (1)
CN 202110973336.6 · Aug 24, 2021 · national
Continuity (2)
Continuation PCTCN2022113217 · Aug 18, 2022
Related Publication 20230292212A1 · Sep 14, 2023
References Cited (26)
US 11470488B1 · Babaei · 2022 [cited by examiner]
US 12191962B2 · Yang et al. · 2025 [cited by applicant]
US 20200052769A1 · Cirik et al. · 2020 [cited by applicant]
US 20200267797A1 · Wei · 2020 [cited by examiner]
US 20200383167A1 · Sengupta · 2020 [cited by applicant]
US 20210100031A1 · Cirik · 2021 [cited by applicant]
US 20220046441A1 · Agiwal · 2022 [cited by examiner]
US 20220360314A1 · Zhu · 2022 [cited by examiner]
US 20230276278A1 · Loehr · 2023 [cited by examiner]
US 20230284197A1 · Zhang · 2023 [cited by examiner]
CN 109803275A · 2019 [cited by applicant]
CN 110896546A · 2020 [cited by applicant]
CN 111093219A · 2020 [cited by applicant]
CN 111836293A · 2020 [cited by applicant]
WO 2021034672A1 · 2021 [cited by applicant]
ISR received in application No. PCT/CN2022/113217 dated Oct. 24, 2022. [cited by applicant]
Supplementary European Search Report received in application EP22860359.3 dated Aug. 29, 2024. [cited by applicant]
Huawei et al., “Enhancements on beam management for multi-TRP in Rel-17,” 3GPP TSG RAN WG1 Meeting #106-e, R1-2106466, e-Meeting (Aug. 16-27, 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Physical channels and modulation (Release 16),” 3GPP TS 38.211 V16.6.0 (Jun. 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Physical layer procedures for control (Release 16),” 3GPP TS 38.213 V16.6.0 (Jun. 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Physical layer procedures for data (Release 17),” 3GPP TS 38.214 V16.6.0 (Jun. 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Medium Access Control (MAC) protocol specification (Release 16),” 3GPP TS 38.321 V16.5.0 (Jun. 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Radio Resource Control (RRC) protocol specification (Release 16),” 3GPP TS 38.331 V16.5.0 (Jun. 2021). [cited by applicant]
ZTE, “Enhancements on beam management for multi-TRP,” 3GPP TSG RAN WG1 Meeting #106-e, R1-2106544 , e-Meeting (Aug. 16-27, 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; NR and NG-RAN Overall Description; Stage 2 (Release 16),” 3GPP TS 38.300 V16.6.0 (Jun. 2021). [cited by applicant]
Third Generation Partnership Project, “Technical Specification Group Radio Access Network; NR; Radio Link Control (RLC) protocol specification (Release 16),” 3GPP TS 38.322 V16.2.0 (Dec. 2020). [cited by applicant]