IP Library › Granted Patent US 12,597,979
Granted Patent B2
US 12,597,979 · App. 18/005,729 · Granted Apr 7, 2026

Beam determining method and apparatus, and storage medium

Inventor: Qin Mu (Beijing, CN)
Assignee: Beijing Xiaomi Mobile Software Co., Ltd.
H04B7/06962H04L5/0048
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Quick Facts
Patent No.
US 12,597,979
App. No.
18/005,729
Granted
Apr 7, 2026
Kind
B2
Abstract

A beam determining method is applied to a network device, and includes: determining beam configuration information, wherein the beam configuration information at least includes parameters configured to indicate a receiving beam corresponding to at least one of N repeated transmissions of a downlink channel, where N is a natural number; and determining a transmitting beam corresponding to the at least one of the N repeated transmissions according to beam parameters corresponding to the at least one of the N repeated transmissions of the downlink channel.

Claims (80)

1 . A beam determining method, applied to a network device, comprising:

determining beam configuration information, wherein the beam configuration information at least comprises parameters configured to indicate receiving beams corresponding to at least two of N repeated transmissions of a downlink channel, where N is a natural number; and

determining transmitting beams corresponding to the at least two of the N repeated transmissions according to beam parameters corresponding to the at least two of the N repeated transmissions of the downlink channel, wherein the receiving beams and the transmitting beams corresponding to the at least two of the N repeated transmissions of the downlink channel are all activated;

the beam configuration information further comprises time granularity configured to indicate beam switching between candidate beams, wherein the time granularity is determined by at least one of:

granularity of frequency hopping,

granularity of variation of a pre-coded matrix in a time domain,

granularity of redundant version (RV) transformation, or

a number of repeated transmissions for a terminal; and

the parameters configured to indicate the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel comprise at least one of:

beam patterns of the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel, the beam patterns corresponding to at least two candidate beams in a candidate beam set; or

parameters of at least two control resource sets (CORESETs), wherein two repeated transmissions of a same physical downlink control channel (PDCCH) are carried in the at least two CORESETs;

wherein the method further comprises:

sending information with the transmitting beams to the terminal in the at least two of the N repeated transmissions.

2 . The method of claim 1 , wherein

a receiving beam and a transmitting beam corresponding to each of the N repeated transmissions of the downlink channel are not fully identical, or are completely different from each other.

3 . The method of claim 1 , wherein the parameters configured to indicate the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel further comprise:

an identifier configured to identify the at least two candidate beams.

4 . The method of claim 3 , further comprising:

transmitting the beam configuration information.

5 . The method of claim 4 , wherein transmitting the beam configuration information comprises:

transmitting the beam configuration information via at least one of downlink control information (DCI) or a media access control element (MAC CE).

6 . The method of claim 3 , wherein the beam configuration information further comprises a parameter configured to indicate a duration of at least one candidate beam.

7 . The method of claim 6 , wherein a duration of each candidate beam is indicated by at least one of: an absolute time of transmitting the candidate beam, or a number of repeated transmissions of the candidate beam,

wherein the duration is determined by at least one of:

the granularity of frequency hopping,

the granularity of variation of the pre-coded matrix in the time domain,

the granularity of RV transformation, or

the number of repeated transmissions for the terminal.

8 . The method of claim 3 , wherein the at least two candidate beams correspond to a same CORESET, wherein at least two repeated transmissions of a same PDCCH are carried in the same CORESET, and the at least two repeated transmissions correspond to different candidate beams.

9 . A non-transitory computer-readable storage medium having stored therein instructions that, when executed by a processor of a network device, cause the network device to perform the beam determining method of claim 1 .

10 . A beam determining method, applied to a terminal, comprising:

acquiring beam configuration information, wherein the beam configuration information at least comprises parameters configured to indicate receiving beams corresponding to at least two of N repeated transmissions of a downlink channel, where N is a natural number; and

determining receiving beams corresponding to the at least two of the N repeated transmissions according to the beam configuration information,

wherein the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel are all activated;

the beam configuration information further comprises: time granularity configured to indicate beam switching between candidate beams, wherein the time granularity is determined by at least one of:

granularity of frequency hopping,

granularity of variation of a pre-coded matrix in a time domain,

granularity of redundant version (RV) transformation, or

a number of repeated transmissions for the terminal; and

the parameters configured to indicate the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel comprise at least one of:

beam patterns of the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel, the beam patterns corresponding to at least two candidate beams in a candidate beam set; or

parameters of at least two control resource sets (CORESETs), wherein two repeated transmissions of a same physical downlink control channel (PDCCH) are carried in the at least two CORESETs;

wherein the method further comprises:

receiving information with the receiving beams from a network device in the at least two of the N repeated transmissions.

11 . The method of claim 10 , wherein

receiving beams corresponding to the N repeated transmissions of the downlink channel are not fully identical, or are completely different from each other.

12 . The method of claim 10 , wherein the parameters configured to indicate the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel further comprise:

an identifier configured to identify the at least two candidate beams.

13 . The method of claim 12 , further comprising:

transmitting the beam configuration information.

14 . The method of claim 13 , wherein transmitting the beam configuration information comprises:

transmitting the beam configuration information via at least one of downlink control information (DCI) or a media access control element (MAC CE).

15 . The method of claim 12 , wherein the beam configuration information further comprises a parameter configured to indicate a duration of at least one candidate beam.

16 . The method of claim 15 , wherein a duration of each candidate beam is indicated by at least one of an absolute time of transmitting the candidate beam, or a number of repeated transmissions of the candidate beam, wherein the duration is determined according to at least one of:

the granularity of frequency hopping,

the granularity of variation of the pre-coded matrix in the time domain,

the granularity of RV transformation, or

the number of repeated transmissions for the terminal.

17 . The method of claim 12 , wherein the at least two candidate beams correspond to a same CORESET, wherein at least two repeated transmissions of a same PDCCH are carried in the same CORESET, and the at least two repeated transmissions correspond to different candidate beams.

18 . A terminal, comprising:

a processor; and

a memory for storing instructions executable by the processor,

wherein the processor is configured to perform the beam determining method of claim 10 .

19 . A non-transitory computer-readable storage medium having stored therein instructions that, when executed by a processor of a terminal, cause the terminal to perform the beam determining method of claim 10 .

20 . A network device, comprising:

a processor; and

a memory for storing instructions executable by the processor,

wherein the processor is configured to: determine beam configuration information, wherein the beam configuration information at least comprises parameters configured to indicate receiving beams corresponding to at least two of N repeated transmissions of a downlink channel, where N is a natural number; and

determine transmitting beams corresponding to the at least two of the N repeated transmissions according to beam parameters corresponding to the at least two of the N repeated transmissions of the downlink channel,

wherein the receiving beams and the transmitting beams corresponding to the at least two of the N repeated transmissions of the downlink channel are all activated;

the beam configuration information further comprises: time granularity configured to indicate beam switching between candidate beams, wherein the time granularity is determined by at least one of:

granularity of frequency hopping,

granularity of variation of a pre-coded matrix in a time domain,

granularity of redundant version (RV) transformation, or

a number of repeated transmissions for a terminal; and

the parameters configured to indicate the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel comprise at least one of:

beam patterns of the receiving beams corresponding to the at least two of the N repeated transmissions of the downlink channel, the beam patterns corresponding to at least two candidate beams in a candidate beam set; or

parameters of at least two control resource sets (CORESETs), wherein two repeated transmissions of a same physical downlink control channel (PDCCH) are carried in the at least two CORESETs;

wherein the processor is further configured to:

send information with the transmitting beams to the terminal in the at least two of the N repeated transmissions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2023
From: MU, QIN
To: BEIJING XIAOMI MOBILE SOFTWARE CO., LTD.
Reel/Frame 062394/0656 →
Continuity (1)
Related Publication 20230283352A1 · Sep 7, 2023
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