IP Library › Granted Patent US 12,261,680
Granted Patent B2
US 12,261,680 · App. 18/651,768 · Granted Mar 25, 2025

System and method for end-to-end beamforming

Inventors: Kenneth V. Buer (Bluff City, TN); Mark J. Miller (San Marcos, CA)
Assignee: ViaSat, Inc.
H04B7/18513H01Q1/06H01Q1/288H01Q3/247H01Q3/40H01Q5/50H01Q19/132H01Q21/0025H01Q21/24H01Q25/001H04B7/024H04B7/0413H04B7/0617H04B7/18508H04B7/18515H04B7/18517H04B7/18534H04B7/1858H04B7/18586H04B7/18589H04B7/204H04B7/2041H04B10/118H04W4/00H04W16/28H04W40/20H04W76/10H04W84/06H01Q1/247H04W16/26
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Quick Facts
Patent No.
US 12,261,680
App. No.
18/651,768
Granted
Mar 25, 2025
Kind
B2
Abstract

Methods and systems are described for providing end-to-end beamforming. For example, an end-to-end beamforming system include a relay satellite and a ground network to provide communications to user terminals located in user beam coverage areas. The ground network includes geographically distributed access nodes and a central processing system (CPS). Beamformers of the ground network generate forward uplink signals from appropriately weighted combinations of user data streams that, after relay by the satellite, produce forward downlink signals that combine to form forward user beams.

Claims (16)

1. A satellite communications system (SCS) comprising:

an array of access nodes, the access nodes being distributed geographically, and each access node configured to transmit a respective beam-weighted forward uplink signal corresponding to an access-node specific forward signal received by the access node;

a central processing system (CPS) comprising a forward beamforming circuit that is configured to split a forward beam signal into multiple copies, each copy corresponding to a respective one of the access nodes, and each copy weighted according to an access-node specific forward beam weight, for formation of the corresponding access-node specific forward signal, and wherein the forward beam signal carries traffic for one or more user terminals located in a forward user beam coverage area; and

a satellite comprising a plurality of forward signal paths, each forward signal path configured to transmit a forward downlink signal corresponding to reception by the forward signal path of a unique superposition of the beam-weighted forward uplink signals;

wherein the forward beamforming circuit is configured to compute the access-node specific forward beam weights such that coherent combining of the forward downlink signals as transmitted by the satellite forms a forward user beam illuminating the forward user beam coverage area.

2. The SCS according to claim 1 , wherein the forward beamforming circuit is configured to compute the access-node specific forward beam weights in dependence on estimating forward gains of end-to-end forward multipath channels from the plurality of access nodes to at least one of the one or more user terminals located in the forward user beam coverage area.

3. The SCS according to claim 1 , wherein each forward signal path is a bent-pipe signal path configured to apply any one or more of the following operations in an analog signal domain: amplification, frequency translation, and polarization.

4. The SCS according to claim 1 , wherein the one or more user terminals are located in a return user beam coverage area that at least partially overlaps with the forward user beam coverage area, and wherein:

the satellite further comprises a plurality of return signal paths, each return signal path configured to transmit a return downlink signal corresponding to reception by the return signal path of a unique superposition of return uplink signals transmitted from given user terminals among a population of user terminals served by the satellite, including the one or more user terminals in the return user beam coverage area;

each access node in the array is configured to output an access-node specific return signal to the CPS, based on each access node receiving a unique superposition of the return downlink signals; and

the CPS is configured to receive the access-node specific return signals from the array of access nodes and includes a return beamforming circuit that is configured to:

apply corresponding access-node specific return beam weights to the access-node specific return signals to obtain beam-weighted return signals;

combine the beam-weighted return signals to form a return beam signal corresponding to the return beam coverage area; and

process the return beam signal to recover return traffic transmitted by the one or more user terminals.

5. The SCS according to claim 4 , wherein the return beamforming circuit is configured to compute the access-node specific return beam weights in dependence on estimating return gains of end-to-end return multipath channels from at least one of the one or more user terminals to the array of access nodes, such that combining the beam-weighted return signals increases a signal-to-noise ratio (SNR) of return uplink signals originating from user terminals located in the return user beam coverage area.

6. The SCS according to claim 5 , wherein each return signal path is a bent-pipe signal path configured to apply any one or more of the following operations in an analog signal domain: amplification, frequency translation, and polarization.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2024
From: BUER, KENNETH V.; MILLER, MARK J.
To: VIASAT, INC.
Reel/Frame 068139/0920 →
Continuity (18)
Continuation 18321147 · May 22, 2023
Continuation 17980611 · Nov 4, 2022
Continuation 17061928 · Oct 2, 2020
Division 16553674 · Aug 28, 2019
Continuation 16394844 · Apr 25, 2019
Division 15714129 · Sep 25, 2017
Continuation PCTUS2017013518 · Jan 13, 2017
Continuation PCTUS2016026815 · Apr 8, 2016
Continuation In Part PCTUS2016026813 · Apr 8, 2016
Provisional Application 62431416 · Dec 7, 2016
Provisional Application 62314921 · Mar 29, 2016
Provisional Application 62312342 · Mar 23, 2016
Provisional Application 62298911 · Feb 23, 2016
Provisional Application 62278368 · Jan 13, 2016
Provisional Application 62164456 · May 20, 2015
Provisional Application 62145810 · Apr 10, 2015
Provisional Application 62145804 · Apr 10, 2015
Related Publication 20240429998A1 · Dec 26, 2024
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