IP Library Granted Patent US 11,489,572
Granted Patent B2
US 11,489,572 · App. 17/299,576 · Granted Nov 1, 2022

Hybrid beam-forming method and device

Inventor: Gang Wu (Shenzhen, CN)
Assignee: ZTE CORPORATION
H04B7/0617H04B7/0691H04B7/086
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Quick Facts
Patent No.
US 11,489,572
App. No.
17/299,576
Granted
Nov 1, 2022
Kind
B2
Abstract

A hybrid beamforming method and device are disclosed. The method may include: sending a test request of an analog beam corresponding to physical antennas and a test request of a digital beam corresponding to radio frequency (RF) front ends, the physical antennas being divided into at least two groups, in which each group of physical antennas corresponds to one of the RF front ends; within a preset test period, switching states of connection between the groups of physical antennas and the RF front ends; and after the test period is over, managing the states of connection between the physical antennas and the RF front ends according to test results for the test requests, where the test results comprise a test result for the analog beam and a test result for the digital beam.

Claims (64)

1. A hybrid beamforming method, comprising:

sending a test request of an analog beam corresponding to physical antennas and a test request of a digital beam corresponding to radio frequency (RF) front ends, the physical antennas being divided into at least two groups, in which each group of physical antennas corresponds to one of the RF front ends;

within a preset test period, switching states of connection between the groups of physical antennas and the RF front ends;

after the test period is over, managing the states of connection between the physical antennas and the RF front ends according to test results for the test requests, wherein the test results comprise at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding; and

managing a hybrid beamforming circuit according to the test result comprising at least one of:

when configuration information for hybrid beamforming is the information of connection between the physical antennas and the RF front ends, selecting target physical antennas and target RF front ends according to the magnitude of numerical values of the measurements in the analog beam polling process and controlling the target physical antennas and the target RF front ends to be in a connected state;

when the configuration information for the hybrid beamforming is the codebook information for the analog precoding, selecting first target codebook information for the analog precoding according to the magnitude of numerical values of the measurements in the analog beam polling process, and determining positions of the phase shifters connected to the physical antennas according to the first target codebook information; or

when the configuration information for the hybrid beamforming is the codebook information for digital precoding, selecting second target codebook information for the digital precoding according to the magnitude of numerical values of the system capacity for digital beamforming, and configuring precoding matrix indicator (PMI) weighting operation for the digital precoding according to the second target codebook information.

2. The method of claim 1 , wherein the duration of the test period equals one or at least two analog beamforming periods.

3. The method of claim 1 , wherein the states of connection between the groups of physical antennas and the RF front ends are realized by control switches, comprising:

each group of physical antennas being connected to a respective one of the RF front ends via a control switch, or

each physical antenna in each group of physical antennas being connected to a respective phase shifter via a control switch.

4. The method of claim 1 , wherein before managing the states of connection between the physical antennas and the RF front ends according to test results for the test requests, the method further comprises:

acquiring the test results for the test requests, wherein a terminal side obtains the test results after executing the test requests.

5. The method of claim 1 , wherein

selecting a codebook corresponding to a maximum value of the measurements in analog beamforming as the first target codebook information; and/or selecting a codebook corresponding to a maximum value of the system capacity of digital beamforming as the second target codebook information.

6. A hybrid beamforming method, comprising:

receiving a test request for an analog beam corresponding to physical antennas and a test request for a digital beam corresponding to radio frequency (RF) front ends, the physical antennas being divided into at least two groups, in which each group of physical antennas corresponds to one of the RF front ends;

within a preset test period, computing test results under respective states of connection between the groups of physical antennas and the RF front ends, the test results comprising at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding;

sending the test results; and

managing a hybrid beamforming circuit according to the test result comprising at least one of:

when configuration information for hybrid beamforming is the information of connection between the physical antennas and the RF front ends, selecting target physical antennas and target RF front ends according to the magnitude of numerical values of the measurements in the analog beam polling process and controlling the target physical antennas and the target RF front ends to be in a connected state;

when the configuration information for the hybrid beamforming is the codebook information for the analog precoding, selecting first target codebook information for the analog precoding according to the magnitude of numerical values of the measurements in the analog beam polling process, and determining positions of the phase shifters connected to the physical antennas according to the first target codebook information; or

when the configuration information for the hybrid beamforming is the codebook information for digital precoding, selecting second target codebook information for the digital precoding according to the magnitude of numerical values of the system capacity for digital beamforming, and configuring precoding matrix indicator (PMI) weighting operation for the digital precoding according to the second target codebook information.

7. A hybrid beamforming device comprising a memory and a processor, wherein the memory stores a computer program which, when executed by the processor, causes the processor to perform a hybrid beamforming method, comprising:

sending a test request of an analog beam corresponding to physical antennas and a test request of a digital beam corresponding to radio frequency (RF) front ends, the physical antennas being divided into at least two groups, in which each group of physical antennas corresponds to one of the RF front ends;

within a preset test period, switching states of connection between the groups of physical antennas and the RF front ends; and

after the test period is over, managing the states of connection between the physical antennas and the RF front ends according to test results for the test requests, wherein the test results comprise at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding; and

managing a hybrid beamforming circuit according to the test result comprising at least one of:

when configuration information for hybrid beamforming is the information of connection between the physical antennas and the RF front ends, selecting target physical antennas and target RF front ends according to the magnitude of numerical values of the measurements in the analog beam polling process and controlling the target physical antennas and the target RF front ends to be in a connected state;

when the configuration information for the hybrid beamforming is the codebook information for the analog precoding, selecting first target codebook information for the analog precoding according to the magnitude of numerical values of the measurements in the analog beam polling process, and determining positions of the phase shifters connected to the physical antennas according to the first target codebook information; or

when the configuration information for the hybrid beamforming is the codebook information for digital precoding, selecting second target codebook information for the digital precoding according to the magnitude of numerical values of the system capacity for digital beamforming, and configuring precoding matrix indicator (PMI) weighting operation for the digital precoding according to the second target codebook information.

8. A hybrid beamforming device comprising a memory and a processor, wherein the memory stores a computer program which, when executed by the processor, causes the processor to perform a hybrid beamforming method, comprising:

receiving a test request for an analog beam corresponding to physical antennas and a test request for a digital beam corresponding to radio frequency (RF) front ends, the physical antennas being divided into at least two groups, in which each group of physical antennas corresponds to one of the RF front ends;

within a preset test period, computing test results under respective states of connection between the groups of physical antennas and the RF front ends, the test results comprising at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding;

sending the test results; and

managing a hybrid beamforming circuit according to the test result comprising at least one of:

when configuration information for hybrid beamforming is the information of connection between the physical antennas and the RF front ends, selecting target physical antennas and target RF front ends according to the magnitude of numerical values of the measurements in the analog beam polling process and controlling the target physical antennas and the target RF front ends to be in a connected state;

when the configuration information for the hybrid beamforming is the codebook information for the analog precoding, selecting first target codebook information for the analog precoding according to the magnitude of numerical values of the measurements in the analog beam polling process, and determining positions of the phase shifters connected to the physical antennas according to the first target codebook information; or

when the configuration information for the hybrid beamforming is the codebook information for digital precoding, selecting second target codebook information for the digital precoding according to the magnitude of numerical values of the system capacity for digital beamforming, and configuring precoding matrix indicator (PMI) weighting operation for the digital precoding according to the second target codebook information.

9. The method of claim 2 , wherein the test results comprise at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding.

10. The method of claim 3 , wherein the test results comprise at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding.

11. The method of claim 4 , wherein the test results comprise at least one of:

measurements in an analog beam polling process corresponding to respective information of connection between the physical antennas and the RF front ends;

measurements in the analog beam polling process corresponding to codebook information for analog precoding; or

system capacity in a digital beamforming process corresponding to codebook information for digital precoding.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2023
From: ZTE CORPORATION
To: SANECHIPS TECHNOLOGY CO., LTD.
Reel/Frame 062777/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2021
From: WU, GANG
To: ZTE CORPORATION
Reel/Frame 056431/0713 →