IP Library Granted Patent US 10,763,931
Granted Patent B2
US 10,763,931 · App. 16/323,777 · Granted Sep 1, 2020

Communication device and a method for hybrid beamforming

Inventor: Fang Yuan (Beijing, CN)
Assignee: Apple Inc.
H04B7/0617H04B7/0486H04B7/0634
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 10,763,931
App. No.
16/323,777
Granted
Sep 1, 2020
Kind
B2
Abstract

A method and a communication device adapted for designing a hybrid beamforming (HB) precoding used in a mobile communication system with an antenna array, the method including aggregating spatial channel vectors received by the antenna array; performing a linear factorization of the aggregation; truncating the linear factorization to generate truncated channels; and designing the HB precoding based on the truncated channels, wherein the HB precoding includes a linearly generated analog beamforming component and a linearly generated digital beamforming component.

Claims (47)

1. A circuit arrangement for a communication device adapted to design a hybrid beamforming (BB) precoding comprising circuitry configured to:

aggregate spatial channel vectors;

perform a linear factorization of the aggregated spatial channel vectors;

truncate the linear factorization to generate truncated channels;

generate an analog beamforming component from the truncated channels; and

generate a digital beamforming component from the truncated channels.

2. The circuit arrangement of claim 1 , further comprising circuitry configured to receive the spatial channel vectors from one or more devices.

3. The circuit arrangement of claim 1 , the circuitry configured to generate an analog beamforming component further configured to linearly generate the analog beamforming component from the truncated channels.

4. The circuit arrangement of claim 1 , the circuitry configured to generate a digital beamforming component further configured to linearly generate the digital beamforming component from the truncated channels.

5. The circuit arrangement of claim 1 , the circuitry configured to perform the linear factorization further configured to perform the linear factorization by singular value decomposition (SVD).

6. The circuit arrangement of claim 1 , the circuitry configured to truncate further configured to maximize gains of the communication device.

7. The circuit arrangement of claim 1 , the circuitry configured to truncate further configured to maximize a beamforming capacity.

8. The circuit arrangement of claim 1 , further comprising circuitry configured to calculate a linear precoding vector for each of the one or more devices on each subcarrier from the truncated channels.

9. The circuit arrangement of claim 8 , further comprising circuitry configured to calculate the linear precoding vector for each of the one or more devices on each subcarrier from the truncated channels by zero-forcing.

10. The circuit arrangement of claim 8 , further comprising circuitry configured to calculate the linear precoding vector for each of the one or more devices on each subcarrier from the truncated channels by minimum mean squared error beamforming.

11. The circuit arrangement of claim 8 , further comprising circuitry configured to aggregate the linear precoding vector for each of the one or more devices over the plurality of subcarriers.

12. The circuit arrangement of claim 11 , further comprising circuitry configured to determine a singular value decomposition (SVD) of the aggregation of the linear precoding vectors.

13. The circuit arrangement of claim 12 , further comprising circuitry configured to construct an analog beamforming matrix from the SVD of the aggregation of the linear precoding vectors.

14. The circuit arrangement of claim 1 , further comprising circuitry configured to calculate a digital beamforming vector for each of the one or more devices.

15. A communication device configured to design a hybrid beamforming (BB) precoding, comprising:

an antenna array configured to receive spatial channel vectors from one or more devices;

aggregation circuitry configured to aggregate the received spatial channel vectors;

factorization circuitry configured to perform a linear factorization of the aggregated received spatial channel vectors;

truncation circuitry configured to truncate the linear factorization to generate truncated channels; and

beamforming generation circuitry configured to generate analog and digital beamforming components from the truncated channels.

16. The communication device of claim 15 , the beamforming generation circuitry comprising analog beamforming generation circuitry configured to linearly generate the analog beamforming component from the truncated channels.

17. The communication device of claim 15 , the beamforming generation circuitry comprising digital beamforming generation circuitry configured to linearly generate the digital beamforming component from the truncated channels.

18. The communication device of claim 15 , the factorization circuitry configured to perform the linear factorization by singular value decomposition (SVD).

19. The communication device of claim 15 , further comprising calculation circuitry configured to calculate a linear precoding vector for each of the one or more devices on each subcarrier from the truncated channels.

20. A method adapted for designing a hybrid beamforming (HB) precoding used in a mobile communication system comprising an antenna array, the method comprising:

aggregating spatial channel vectors received by the antenna array;

performing a linear factorization of the aggregation;

truncating the linear factorization to generate truncated channels; and

designing the HB precoding based on the truncated channels, wherein the HB precoding comprises:

a linearly generated analog beamforming component; and

a linearly generated digital beamforming component.

21. The method of claim 20 , wherein the linear factorization comprises a singular value decomposition (SVD).

22. The method of claim 20 , wherein the truncating comprises maximizing a beamforming capacity.

23. The method of claim 20 , further comprising calculating a linear precoding vector for each of the one or more devices on each subcarrier from the truncated channels.

24. A non-transitory computer readable medium with program instructions, which when executed, cause a processor of a device with an antenna array to design a hybrid beamforming (BB) precoding, comprising:

aggregating spatial channel vectors received by the antenna array;

performing a linear factorization of the aggregation;

truncating the linear factorization to generate truncated channels; and

designing the HB precoding utilizing the truncated channels, wherein the HB precoding comprises:

a linearly generated analog beamforming component; and

a linearly generated digital beamforming component.

25. The non-transitory computer readable medium of claim 24 , wherein the linear factorization comprises a singular value decomposition (SVD).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053065/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2019
From: YUAN, FANG
To: INTEL CORPORATION
Reel/Frame 048272/0256 →
Continuity (1)
Related Publication 20200195325A1 · Jun 18, 2020