IP Library › Granted Patent US 12,088,389
Granted Patent B2
US 12,088,389 · App. 17/609,449 · Granted Sep 10, 2024

Methods and devices for radio beam determination

Inventors: Zhan Zhang (Beijing, CN); Huaisong Zhu (Beijing, CN)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04B7/0695H04B7/0626
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Quick Facts
Patent No.
US 12,088,389
App. No.
17/609,449
Granted
Sep 10, 2024
Kind
B2
Abstract

Provided is a method in a network device for radio beam determination. The method includes: obtaining current information data related to a terminal device; and estimating a candidate radio beam configuration for communication with the terminal device based on the current information data by using a probabilistic mechanism, algorithm or policy that is obtained by analyzing historical radio beam configurations for communication with the terminal device and history information data related to the terminal.

Claims (65)

1. A method in a network device for radio beam determination, comprising:

obtaining current information data related to a terminal device, the current information data comprising at least one of:

a current channel configuration or measurement between the terminal device and the network device over one or more carriers or sub-carriers; and

a current channel configuration or measurement between the terminal device and one or more other network devices;

estimating a candidate radio beam configuration for communication with the terminal device based on the current information data by using a probabilistic mechanism, algorithm or policy that is obtained by analyzing historical radio beam configurations for communication with the terminal device and history information data related to the terminal, the history information data comprising at least one of:

historical channel configurations or measurements between the terminal device and the network device over one or more carriers or sub-carriers; and

historical channel configurations or measurements between the terminal device and one or more other network devices; and

selecting, as the candidate radio beam configuration, one of the historical radio beam configurations that has a highest conditional probability given the current information data.

2. The method of claim 1 , wherein

the historical radio beam configurations comprise historical radio beam configurations for radio beams at the network device for transmission to the terminal device and/or reception from the terminal device, and/or radio beams at the terminal device for transmission to the network device and/or reception from the network device, and/or

the candidate radio beam configuration comprises a candidate radio beam configuration for a radio beam at the network device for transmission to the terminal device, a radio beam at the network device for reception from the terminal device, a radio beam at the terminal device for transmission to the network device, and/or a radio beam at the terminal device for reception from the network device.

3. The method of claim 1 , wherein

the historical channel configurations comprise historical cell and/or sector configurations, historical time-frequency resource allocations, historical beamforming weight matrixes or vectors, and/or historical radio beam direction parameters, and

the current channel configuration comprises a current cell and/or sector configuration, a current time-frequency resource allocation, a current beamforming weight matrix or vector, and/or a current radio beam direction parameter.

4. The method of claim 1 , wherein

the historical channel measurements comprise historical measurements on Channel State Information (CSI), received signal power or received signal strength, spatial channel status, angle of signal arrival, angle of signal departure, and/or channel status of antenna panel or array, and/or

the current channel measurement comprises a current measurement on CSI, received signal power or received signal strength, spatial channel status, angle of signal arrival, angle of signal departure, and/or channel status of an antenna panel or array.

5. The method of claim 1 , wherein the network device and the one or more other network devices comprise network devices serving the terminal device in a Dual Connectivity, DC, Multiple Connectivity (MC), or Carrier Aggregation (CA), configuration, or Transmitting/Receiving Points (TRPs), in a Coordinated Multi-Point (COMP), set for the terminal device.

6. The method of claim 1 , wherein the network device and the one or more other network devices comprise network devices utilizing different Radio Access Technologies (RATs).

7. The method of claim 1 , wherein each historical radio beam configuration is associated with one or more pieces of the history information data that are obtained in association with the historical radio beam configuration, or occur within a predetermined time period relative to the historical radio beam configuration.

8. The method of claim 1 , further comprising:

determining the candidate radio beam configuration as a current radio beam configuration for communication with the terminal device.

9. The method of claim 1 , further comprising:

determining the candidate radio beam configuration as a current radio beam configuration for communication with the terminal device only when the highest conditional probability is higher than or equal to a predetermined threshold, or

determining the current radio beam configuration for communication with the terminal device based on Channel State Information (CSI), measured at the network device or received from the terminal device, when the highest conditional probability is lower than the predetermined threshold.

10. The method of claim 8 , further comprising:

signaling the current radio beam configuration to the terminal device.

11. The method of claim 1 , wherein the probabilistic mechanism, algorithm or policy is created or trained at the network device.

12. The method of claim 11 , wherein the probabilistic mechanism, algorithm or policy is created or trained by means of neural network based machine learning, Supporting Vector Machine (SVM), or Bayesian statistical estimation.

13. A method in a network device for radio beam determination, comprising:

obtaining current information data related to a terminal device, the current information data comprising at least one of:

a current channel configuration or measurement between the terminal device and the network device over one or more carriers or sub-carriers; and

a current channel configuration or measurement between the terminal device and one or more other network devices;

estimating a candidate radio beam configuration for communication with the terminal device based on the current information data by using a probabilistic mechanism, algorithm or policy created or trained at the network device and that is obtained by analyzing historical radio beam configurations for communication with the terminal device and history information data related to the terminal;

recording the historical radio beam configurations and the history information data at the network device; and

selecting, as the candidate radio beam configuration, one of the historical radio beam configurations that has a highest conditional probability given the current information data,

wherein the history information data and the current information data are measured at the network device.

14. The method of claim 1 , further comprising:

receiving the probabilistic mechanism, algorithm or policy from a network node.

15. A method in a network device for radio beam determination, comprising:

obtaining current information data related to a terminal device;

estimating a candidate radio beam configuration for communication with the terminal device based on the current information data by using a probabilistic mechanism, algorithm or policy received from a network node and that is obtained by analyzing historical radio beam configurations for communication with the terminal device and history information data related to the terminal;

selecting, as the candidate radio beam configuration, one of the historical radio beam configurations that has a highest conditional probability given the current information data; and

signaling a current radio beam configuration and a current information data to the network node.

16. A method in a network node for facilitating radio beam determination, comprising:

recording historical radio beam configurations for communication between a network device and a terminal device and history information data related to the terminal, the history information data comprising at least one of:

historical channel configurations or measurements between the terminal device and the network device over one or more carriers or sub-carriers; and

historical channel configurations or measurements between the terminal device and one or more other network devices;

obtaining a probabilistic mechanism, algorithm or policy by analyzing the historical radio beam configurations and the history information data; and

selecting, as a candidate radio beam configuration, one of the historical radio beam configurations that has a highest conditional probability given current information data related to the terminal device by using the probabilistic mechanism, algorithm or policy, the current information data comprising at least one of:

a current channel configuration or measurement between the terminal device and the network device over one or more carriers or sub-carriers; and

a current channel configuration or measurement between the terminal device and one or more other network devices.

17. A network node comprising:

a processor; and

memory coupled to the processor and having instructions stored therein that are executable by the network node to perform operations comprising:

recording historical radio beam configurations for communication between a network device and a terminal device and history information data related to the terminal, the history information data comprising at least one of:

historical channel configurations or measurements between the terminal device and the network device over one or more carriers or sub-carriers; and

historical channel configurations or measurements between the terminal device and one or more other network devices;

obtaining a probabilistic mechanism, algorithm or policy by analyzing the historical radio beam configurations and the history information data; and

selecting, as a candidate radio beam configuration, one of the historical radio beam configurations that has a highest conditional probability given current information data related to the terminal device by using the probabilistic mechanism, algorithm or policy, the current information data comprising at least one of:

a current channel configuration or measurement between the terminal device and the network device over one or more carriers or sub-carriers; and

a current channel configuration or measurement between the terminal device and one or more other network devices.

18. The method of claim 1 , wherein estimating the candidate radio beam configuration comprises estimating the candidate radio beam configuration for communication with the terminal device based on the current information data by using the probabilistic mechanism, algorithm or policy received from a network node,

the method further comprising:

signaling a current radio beam configuration and a current information data to the network node.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2021
From: ZHANG, ZHAN; ZHU, HUAISONG
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 058042/0732 →
Continuity (1)
Related Publication 20220216905A1 · Jul 7, 2022