IP Library Granted Patent US 11,239,553
Granted Patent B2
US 11,239,553 · App. 17/013,733 · Granted Feb 1, 2022

Uni-dimensional steering of phased array antennas

Inventor: Alireza Mahanfar (Hawthorne, CA)
Assignee: Space Exploration Technologies Corp.
H01Q3/34H01Q21/061H01Q15/02H01Q15/14
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Quick Facts
Patent No.
US 11,239,553
App. No.
17/013,733
Granted
Feb 1, 2022
Kind
B2
Abstract

A phased array antenna system configured for communication with a satellite that emits or receives radio frequency (RF) signals travels in a first direction, the antenna system includes a phased array antenna including a plurality of antenna elements distributed in a plurality of M columns oriented in the first direction and a plurality of N rows extending in a second direction normal to the first direction, and a plurality of fixed phase shifters aligned for phase offsets between antenna elements in the first direction and a gain-enhancement system configured for gain enhancement in the second direction of radio frequency signals received by and emitted from the phased array antenna.

Claims (22)

1. A phased array antenna system configured for communication with a satellite that emits or receives radio frequency (RF) signals, the antenna system comprising:

a phased array antenna including a plurality of antenna elements, and a plurality of fixed phase shifters aligned for phase offsets between antenna elements;

a gain-enhancement system configured for gain enhancement of radio frequency signals received by and emitted from the phased array antenna; and

a controller configured to turn individual antenna elements on and off based at least in part on orientations of the individual antenna elements relative to the satellite, wherein an orientation of an individual antenna element relative to the satellite is correlated with a strength of RF signals received by the individual antenna element from the satellite.

2. The phased array antenna system of claim 1 , wherein the gain enhancement system is selected from the group consisting of a lens system, a reflector system, a superstrate system, and combinations thereof.

3. The phased array antenna system of claim 2 , wherein the lens system includes a semi-cylindrical or a cylindrical lens having a longitudinal axis oriented parallel to the first direction.

4. The phased array antenna system of claim 1 , wherein the phased array antenna includes a predetermined quantity of M columns oriented in a first direction and a plurality of N rows extending in a second direction normal to the first direction.

5. The phased array antenna system of claim 4 , wherein a quantity of N rows is greater than or equal to the quantity of M columns.

6. The method of claim 1 , wherein the satellite has a repeating ground track in a first direction, and the gain-enhancement system is further configured for the gain enhancement in a second direction that is normal to the first direction.

7. A method of uni-dimensionally steering in a coordinate system a phased array antenna system configured for communication with a satellite that emits or receives radio frequency (RF) signals, the method comprising:

identifying a travel direction of the satellite in a first direction;

orienting a phased array antenna in the first direction, the antenna including a plurality of antenna elements distributed in a plurality of M columns oriented in the first direction and a plurality of N rows extending in a second direction normal to the first direction, and a plurality of phase shifters aligned for phase offsets between antenna elements in the first direction;

enhancing gain in the second direction of radio frequency signals received by and emitted from the phased array antenna;

receiving and/or emitting RF signals between the satellite and the antenna; and

switching individual antenna elements on and off by a controller based at least in part on orientations of the individual antenna elements relative to the satellite, wherein an orientation of an individual antenna element relative to the satellite is correlated with a strength of RF signals received by the individual antenna element from the satellite.

8. The method of claim 7 , wherein the coordinate system is spherical or Cartesian.

9. The method of claim 7 , wherein the enhancing gain includes using a gain enhancement system selected from the group consisting of a lens system, a reflector system, a superstrate system, and combinations thereof.

10. The method of claim 9 , wherein the lens system includes a semi-cylindrical or a cylindrical lens having a longitudinal axis oriented parallel to the first direction.

11. The method of claim 7 , wherein the phased array antenna includes a predetermined number of M columns.

12. The method of claim 7 , wherein the number of N rows is greater than or equal to the number of M columns.

13. The method of claim 7 , wherein the controller receives an input from a global positioning system (GPS), and wherein the input includes a position of the satellite.

14. The method of claim 7 , wherein the satellite has a repeating ground track in the first direction.

Assignments (4)
CERTIFICATE OF CONVERSION (STATE OF DELAWARE TO STATE OF TEXAS; NEW FILE NO.: 805421124; FILED: 02-14-2024) Recorded Mar 7, 2025
From: SPACE EXPLORATION TECHNOLOGIES CORP.
To: SPACE EXPLORATION TECHNOLOGIES CORP.
Reel/Frame 070445/0375 →
RELEASE OF SECURITY INTEREST Recorded Feb 18, 2025
From: BANK OF AMERICA, N.A.
To: SPACE EXPLORATION TECHNOLOGIES CORP.
Reel/Frame 070252/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2021
From: MAHANFAR, ALIREZA
To: SPACE EXPLORATION TECHNOLOGIES CORP.
Reel/Frame 056579/0812 →
SECURITY AGREEMENT Recorded Dec 8, 2020
From: SPACE EXPLORATION TECHNOLOGIES CORP.
To: BANK OF AMERICA, N.A.
Reel/Frame 054644/0749 →
Continuity (4)
Continuation 15908602 · Feb 28, 2018
Provisional Application 62596647 · Dec 8, 2017
Provisional Application 62465015 · Feb 28, 2017
Related Publication 20200403309A1 · Dec 24, 2020
Cited By (2)
US 12,261,375 US 12,347,939