IP Library Granted Patent US 9,748,629
Granted Patent B2
US 9,748,629 · App. 14/836,118 · Granted Aug 29, 2017

Troposcatter antenna pointing

Inventors: Alexie Velez (Tampa, FL); Robert D. McCarley (Tampa, FL); Fred William Rieck (Lithia, FL); Douglas B. Houston (Riverview, FL)
Assignee: Telecommunication Systems, Inc.
H01Q1/125
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Quick Facts
Patent No.
US 9,748,629
App. No.
14/836,118
Granted
Aug 29, 2017
Kind
B2
Abstract

A troposcatter terminal can include a location receiver, a network interface, an antenna control unit, and a motor controller. The location receiver can be configured to receive first current location information associated with a local troposcatter antenna. The network interface can be configured to receive second current location information associated with a distant troposcatter antenna. The antenna control unit can be configured to determine a heading from the local troposcatter antenna to the distant troposcatter antenna, an azimuth angle for the local troposcatter antenna, and an elevation angle for the local troposcatter antenna, the heading, the azimuth angle, and the elevation angle based on the first location information and the second location information. The motor controller can be configured to point the local troposcatter antenna according to the heading, the azimuth angle, and the elevation angle to establish troposcatter communications between the local troposcatter antenna and the distant troposcatter antenna.

Claims (28)

1. A troposcatter terminal, comprising:

a location receiver configured to receive first current location information associated with a local troposcatter antenna;

a network interface configured to receive second current location information associated with a distant troposcatter antenna;

an antenna control unit configured to determine a heading from the local troposcatter antenna to the distant troposcatter antenna, an azimuth angle for the local troposcatter antenna, and an elevation angle for the local troposcatter antenna, the heading, the azimuth angle, and the elevation angle based on the first location information and the second location information; and

a motor controller configured to point the local troposcatter antenna according to the heading, the azimuth angle, and the elevation angle determined by the antenna control unit to establish troposcatter communications between the local troposcatter antenna and the distant troposcatter antenna.

2. The troposcatter terminal according to claim 1 , wherein the location receiver is a Global Positioning System (GPS) receiver.

3. The troposcatter terminal according to claim 1 , wherein the location receiver is an acoustic positioning receiver.

4. The troposcatter terminal according to claim 1 , further comprising an inertial navigation unit to read roll, pitch, and yaw associated with the local troposcatter antenna.

5. The troposcatter terminal according to claim 4 , wherein the motor controller compensates for the roll, pitch, and yaw read by the inertial navigation unit.

6. The troposcatter terminal according to claim 1 , wherein the network interface is a cubesat interface.

7. The troposcatter terminal according to claim 1 , wherein the network interface is a cellular interface.

8. The troposcatter terminal according to claim 1 , wherein the network interface is an Ultra High Frequency (UHF)/Very High Frequency (VHF) interface.

9. The troposcatter terminal according to claim 1 , further comprising a graphic user interface to display pointing information associated with the local troposcatter antenna.

10. The troposcatter terminal according to claim 1 , wherein the troposcatter terminal is identified by a unique identifier.

11. A method to establish troposcatter communications, comprising:

receiving, with a location receiver, first current location information associated with a local troposcatter antenna;

receiving, with a network interface, second current location information associated with a distant troposcatter antenna;

determining, with an antenna control unit, a heading from the local troposcatter antenna to the distant troposcatter antenna, an azimuth angle for the local troposcatter antenna, and an elevation angle for the local troposcatter antenna, the heading, the azimuth angle, and the elevation angle based on the first location information and the second location information; and

pointing, with a motor controller, the local troposcatter antenna according to the heading, the azimuth angle, and the elevation angle to establish the troposcatter communications between the local troposcatter antenna and the distant troposcatter antenna.

12. The method to establish troposcatter communications according to claim 11 , wherein the location receiver is a Global Positioning System (GPS) receiver.

13. The method to establish troposcatter communications according to claim 11 , wherein the location receiver is an acoustic positioning receiver.

14. The method to establish troposcatter communications according to claim 11 , further comprising reading, with an inertial navigation unit, roll, pitch, and yaw associated with the local troposcatter antenna.

15. The method to establish troposcatter communications according to claim 14 , further comprising stabilizing, with the motor controller, the local troposcatter antenna according to the roll, pitch, and yaw read by the inertial navigation unit.

16. The method to establish troposcatter communications according to claim 11 , wherein the network interface is a cubesat interface.

17. The method to establish troposcatter communications according to claim 11 , wherein the network interface is a cellular interface.

18. The method to establish troposcatter communications according to claim 11 , wherein the network interface is an Ultra High Frequency (UHF)/Very High Frequency (VHF) interface.

19. The method to establish troposcatter communications according to claim 11 , further comprising displaying, with a graphic user interface, pointing information associated with the local troposcatter antenna.

20. The method to establish troposcatter communications according to claim 11 , further comprising identifying a troposcatter terminal, associated with the local troposcatter antenna, by a unique identifier.

Assignments (4)
RELEASE OF SECURITY INTEREST IN PATENTS AT REEL 048104/FRAME 0080 Recorded Jun 19, 2024
From: CITIBANK, N.A., AS ADMINISTRATIVE AGENT
To: COMTECH TELECOMMUNICATIONS CORP.; COMTECH EF DATA CORP.; COMTECH MOBILE DATACOM LLC; COMTECH SATELLITE NETWORK TECHNOLOGIES, INC.; COMTECH SYSTEMS, INC.; COMTECH XICOM TECHNOLOGY, INC.; MAPLE ACQUISITION LLC; TELECOMMUNICATION SYSTEMS, INC.
Reel/Frame 067780/0444 →
SECURITY INTEREST Recorded Jun 18, 2024
From: TELECOMMUNICATION SYSTEMS, INC.
To: TCW ASSET MANAGEMENT COMPANY LLC, AS AGENT
Reel/Frame 067776/0309 →
SECURITY INTEREST Recorded Nov 16, 2018
From: COMTECH TELECOMMUNICATIONS CORP.; COMTECH EF DATA CORP.; COMTECH XICOM TECHNOLOGY, INC.; COMTECH SYSTEMS, INC.; COMTECH PST CORP.; COMTECH MOBILE DATACOM CORPORATION; ANGELS ACQUISITION CORP.; ARMER COMMUNICATIONS ENGINEERING SERVICES, INC.; COMTECH AEROASTRO, INC.; COMTECH ANTENNA SYSTEMS, INC.; COMTECH COMMUNICATIONS CORP.; COMTECH COMSTREAM, INC.; COMTECH SYSTEMS INTERNATIONAL, INC.; COMTECH TOLT TECHNOLOGIES, INC.; TIERNAN RADYNE COMSTREAM, INC.; COMTECH CPI ELECTRON DEVICES CORP.; COMTECH CPI MICROWAVE CORP.; TELECOMMUNICATION SYSTEMS, INC.; NETWORKS IN MOTION, INC.; SOLVERN INNOVATIONS, INC.; MICRODATA, LLC; MICRODATA GIS, INC.; MAPLE ACQUISITION LLC; NEXTGEN COMMUNICATIONS, INC., A CORPORATION OF MARYLAND; NEXTGEN COMMUNICATIONS, INC., A CORPORATION OF VIRGINIA; OLIVE ACQUISITION LLC
To: CITIBANK, N.A.
Reel/Frame 048104/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2015
From: VELEZ, ALEXIE; MCCARLEY, ROBERT D.; RIECK, FRED WILLIAM; HOUSTON, DOUGLAS B.
To: TELECOMMUNICATION SYSTEMS, INC.
Reel/Frame 036426/0735 →
Continuity (1)
Related Publication 20170062900A1 · Mar 2, 2017