IP Library Granted Patent US 10,716,111
Granted Patent B2
US 10,716,111 · App. 15/825,032 · Granted Jul 14, 2020

Backhaul radio with adaptive beamforming and sample alignment

Inventors: Arthur Ishiguro (Santa Clara, CA); Adnan Raja (Santa Clara, CA); Badri Varadarajan (Mountain View, CA); Kevin J. Negus (Philipsburg, MT)
Assignee: SKYLINE PARTNERS TECHNOLOGY LLC
H04W72/0453H01Q1/246H01Q3/24H01Q5/50H01Q21/061H01Q21/205H01Q21/24H01Q21/29H01Q25/00H01Q25/005H04B7/04H04B7/063H04B7/0617H04L1/00H04L1/0003H04L5/006H04L5/0007H04L5/0023H04L5/0028H04L5/0048H04L5/14H04L5/143H04L25/0204H04L25/0224H04L25/03019H04L27/01H04L27/2636H04L27/2678H04W24/02H04W52/52H04W72/04H04W84/12H04B2001/0408H04L1/0009H04L1/1607H04L1/1671H04L27/0008H04L27/265H04L2025/03414H04W76/27
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Quick Facts
Patent No.
US 10,716,111
App. No.
15/825,032
Granted
Jul 14, 2020
Kind
B2
Abstract

A backhaul radio is disclosed that operates in multipath propagation environments such as obstructed LOS conditions with uncoordinated interference sources in the same operating band. Such a backhaul radio may use adaptive beamforming and sample alignment at the transmitter to enhance the link performance. Such backhaul radios may communicate with each other to compute and apply optimal beamforming parameters for a particular propagation environment through a closed-loop feedback mechanism.

Claims (26)

1. A backhaul radio comprising:

a plurality of receive radio frequency (RF) chains, wherein each receive RF chain is capable of converting from one of a plurality of receive RF signals to a respective one of a plurality of receive chain output signals;

a plurality of directive gain antenna elements; and

a processor at the receiver to compute and feedback the phase and sample timing offset (STO) for optimal beamforming,

wherein the processor is further configured to calculate a plurality of relative STOs and a plurality of relative phase offsets and average and quantize the plurality of relative STOS and the plurality of relative phase offsets to determine the feedback.

2. The backhaul radio of claim 1 , wherein the processor is further configured to compute relative STOs and relative phase offsets.

3. The backhaul radio of claim 1 , wherein the processor is further configured to receive channel matrix estimates.

4. The backhaul radio of claim 1 , wherein the feedback comprises an adjustment of both the phase and STO.

5. The backhaul radio of claim 1 , wherein the processor is further configured to perform a channel estimation using a received sounding preamble.

6. The backhaul radio of claim 5 , wherein the channel estimation is performed by correlating a received signal with the received sounding preamble.

7. The backhaul radio of claim 1 , wherein the processor computes the STO for each element in a channel.

8. The backhaul radio of claim 1 , wherein the phase is computed after the STO is computed.

9. The backhaul radio of claim 1 , wherein the STO feedback is performed before the phase feedback.

10. A fixed wireless access point comprising:

a plurality of receive radio frequency (RF) chains, wherein each receive RF chain is capable of converting from one of a plurality of receive RF signals to a respective one of a plurality of receive chain output signals;

a plurality of directive gain antenna elements; and

a processor at the receiver to compute and feedback the phase and sample timing offset (STO) for optimal beamforming,

wherein the processor is further configured to calculate a plurality of relative STOs and a plurality of relative phase offsets and average and quantize the plurality of relative STOS and the plurality of relative phase offsets to determine the feedback.

11. The fixed wireless access point of claim 10 , wherein the processor is further configured to compute relative STOs and relative phase offsets.

12. The fixed wireless access point of claim 10 , wherein the processor is further configured to receive channel matrix estimates.

13. The fixed wireless access point of claim 10 , wherein the feedback comprises an adjustment of both the phase and STO.

14. The fixed wireless access point of claim 10 , wherein the processor is further configured to perform a channel estimation using a received sounding preamble.

15. The fixed wireless access point of claim 14 , wherein the channel estimation is performed by correlating a received signal with the received sounding preamble.

16. The fixed wireless access point of claim 10 , wherein the processor computes the STO for each element in a channel.

17. The fixed wireless access point of claim 10 , wherein the phase is computed after the STO is computed.

18. The fixed wireless access point of claim 10 , wherein the STO feedback is performed before the phase feedback.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2022
From: SKYLINE PARTNERS TECHNOLOGY LLC
To: COMS IP HOLDINGS, LLC
Reel/Frame 061070/0695 →
MERGER Recorded Jun 1, 2022
From: COMSOVEREIGN HOLDING CORP.
To: HELSON, AS MEMBERS' REP FBO THE FORMER MEMBERS OF SKYLINE PARTNERS TECHNOLOGY LLC, JOHN
Reel/Frame 061263/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2020
From: ISHIGURO, ARTHUR; RAJA, ADNAN; VARADARJAN, BADRI; NEGUS, KEVIN J.
To: CBF NETWORKS, INC.
Reel/Frame 052812/0248 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2020
From: CBF NETWORKS, INC.
To: SKYLINE PARTNERS TECHNOLOGY LLC
Reel/Frame 052812/0379 →
Continuity (15)
Continuation In Part 15651707 · Jul 17, 2017
Continuation In Part 15595172 · May 15, 2017
Continuation 15285354 · Oct 4, 2016
Continuation 15060013 · Mar 3, 2016
Continuation 14688550 · Apr 16, 2015
Continuation 14498959 · Sep 26, 2014
Continuation 14337744 · Jul 22, 2014
Continuation In Part 14337744 · Jul 22, 2014
Continuation 13645472 · Oct 4, 2012
Continuation 13371366 · Feb 10, 2012
Continuation 13212036 · Aug 17, 2011
Provisional Application 62430229 · Dec 5, 2016
Provisional Application 62427055 · Nov 28, 2016
Provisional Application 61910194 · Nov 29, 2013
Related Publication 20180092099A1 · Mar 29, 2018