IP Library Granted Patent US 11,509,070
Granted Patent B2
US 11,509,070 · App. 17/338,894 · Granted Nov 22, 2022

Multi-beam active phased array architecture with independent polarization control

Inventors: David W. Corman (Gilbert, AZ); Rob Zienkewicz (Chandler, AZ); David R. Saunders (Scottsdale, AZ)
Assignee: VIASAT, INC.
H01Q21/22H01Q1/27H01Q1/288H01Q3/26H01Q3/36H01Q15/242H04B7/0408H04B7/10H04B7/1858H04B7/18515H04B7/18593H04W72/042H04W72/0413H04W72/0453
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Quick Facts
Patent No.
US 11,509,070
App. No.
17/338,894
Granted
Nov 22, 2022
Kind
B2
Abstract

In an exemplary embodiment, a phased array antenna comprises multiple subcircuits in communication with multiple radiating elements. The radio frequency signals are independently adjusted for both polarization control and beam steering. In a receive embodiment, multiple RF signals of various polarizations are received and combined into at least one receive beam output. In a transmit embodiment, at least one transmit beam input is divided and transmitted through multiple radiating elements, with the transmitted beams having various polarizations. In an exemplary embodiment, the phased array antenna provides multi-beam formation over multiple operating frequency bands. The wideband nature of the active components allows for operation over multiple frequency bands simultaneously.

Claims (20)

1. A phased array circuit comprising:

a dual-polarized radiating element;

a first phase shifter for receiving a first beam, phase shifting the first beam and providing the phase shifted first beam to a first input of a circuit; and

a second phase shifter for receiving a second beam, phase shifting the second beam and providing the phase shifted second beam to a second input of the circuit;

wherein the circuit is configured to adjust a first signal communicated between the first input of the circuit and a first port of the dual-polarized radiating element by separately performing any desired amplification on each of a first in-phase vector and a first quadrature-phase vector of the first signal; and to adjust a second signal communicated between a second port of the dual-polarized radiating element and the second input of the circuit by separately performing any desired amplification on each of a second in-phase vector and quadrature-vector of the second signal.

2. The phased array circuit of claim 1 , wherein the first port of the dual-polarized radiating element is spatially orthogonal to the second port of the dual-polarized radiating element.

3. The phased array circuit of claim 1 , wherein the dual-polarized radiating element has one of: spatially orthogonal linear polarizations, spatially and electrically orthogonal circular polarizations, and spatially orthogonal and electrically non-orthogonal elliptical polarizations.

4. An antenna system having independently steerable beams, the antenna system comprising:

a plurality of phased array circuits, wherein each of the plurality of phased array circuits comprises:

a dual-polarized radiating element;

a first phase shifter for receiving a first beam, phase shifting the first beam and providing the phase shifted first beam to a first input of a circuit; and

a second phase shifter for receiving a second beam, phase shifting the second beam and providing the phase shifted second beam to a second input of the circuit;

wherein the circuit is configured to adjust a first signal communicated between the first input of the circuit and a first port of the dual-polarized radiating element by separately performing any desired amplification on each of a first in-phase vector and a first quadrature-phase vector of the first signal; and to adjust a second signal communicated between a second port of the dual-polarized radiating element and the second input of the circuit by separately performing any desired amplification on each of a second in-phase vector and quadrature-vector of the second signal.

5. The antenna system of claim 4 , wherein the plurality of phased array circuits are associated with a plurality of beams that are independently steerable.

6. The antenna system of claim 4 , wherein the antenna system is configured to operate at a first frequency range and a second frequency range simultaneously.

7. The antenna system of claim 4 , wherein an operational frequency and/or polarization of the antenna system is remotely changeable.

8. The antenna system of claim 4 , wherein the polarization and frequency of each radiating element of each phased array circuit of the plurality of phased array circuits is switchable.

9. The antenna system of claim 4 , wherein the antenna system is an electronically steerable multiple beam phased array antenna.

10. The antenna system of claim 4 , wherein the antenna system comprises a patch antenna formed of the dual-polarized radiating element of each of the plurality of phased array circuits.

11. The antenna system of claim 4 , wherein the antenna system comprises an electronically steerable phased array antenna comprising a radiating element array comprising the dual-polarized radiating element of each of the plurality of phased array circuits.

Assignments (5)
SUPPLEMENTAL PATENT SECURITY AGREEMENT Recorded Sep 19, 2023
From: VIASAT, INC.
To: MUFG BANK, LTD., AS AGENT
Reel/Frame 064948/0379 →
SUPPLEMENTAL PATENT SECURITY AGREEMENT Recorded Jun 29, 2023
From: VIASAT, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 064164/0152 →
SUPPLEMENTAL PATENT SECURITY AGREEMENT Recorded Jun 29, 2023
From: VIASAT, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL TRUSTEE
Reel/Frame 064176/0566 →
SECURITY AGREEMENT Recorded Jun 1, 2023
From: VIASAT, INC.
To: BANK OF AMERICA, N.A., AS AGENT
Reel/Frame 063822/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: CORMAN, DAVID; ZIENKEWICZ, ROB; SAUNDERS, DAVID R.
To: VIASAT, INC.
Reel/Frame 058024/0883 →
Continuity (20)
Continuation 17012465 · Sep 4, 2020
Continuation 16674881 · Nov 5, 2019
Continuation 16284529 · Feb 25, 2019
Continuation 15804818 · Nov 6, 2017
Continuation 15212111 · Jul 15, 2016
Continuation 14617630 · Feb 9, 2015
Continuation 14216760 · Mar 17, 2014
Continuation 13692683 · Dec 3, 2012
Continuation In Part 13412901 · Mar 6, 2012
Continuation 12759059 · Apr 13, 2010
Provisional Application 61265605 · Dec 1, 2009
Provisional Application 61259375 · Nov 9, 2009
Provisional Application 61259049 · Nov 6, 2009
Provisional Application 61237967 · Aug 28, 2009
Provisional Application 61234521 · Aug 17, 2009
Provisional Application 61234513 · Aug 17, 2009
Provisional Application 61222363 · Jul 1, 2009
Provisional Application 61222354 · Jul 1, 2009
Provisional Application 61168913 · Apr 13, 2009
Related Publication 20220077597A1 · Mar 10, 2022
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