IP Library Granted Patent US 8,050,568
Granted Patent B2
US 8,050,568 · App. 12/276,764 · Granted Nov 1, 2011

Free-space sensor network

Assignee: The Boeing Company
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Quick Facts
Patent No.
US 8,050,568
App. No.
12/276,764
Granted
Nov 1, 2011
Kind
B2
Abstract

A free-space network may include: a plurality of geographically distributed free-space sensors for sensing at least one target; a networking apparatus for combining sensed information regarding at least one target from the geographically distributed free-space sensors; a target information device for communicating to at least one user combined sensed information regarding at least one target, from the geographically distributed free-space sensors, as provided by the networking apparatus; and at least one communication link connecting in free-space the geographically distributed sensors, the networking apparatus, and the target information device.

Claims (32)

1. A free-space sensor network comprising:

a plurality of geographically distributed free-space sensors for sensing at least one target, wherein at least two of the sensors are of different types;

a networking apparatus for combining sensed information regarding the at least one target from the geographically distributed free-space sensors;

a target information device for communicating to at least one user the combined sensed information regarding the at least one target, from the geographically distributed free-space sensors, provided by the networking apparatus; and

at least one communication link connecting in free-space said geographically distributed sensors, said networking apparatus, and said target information device.

2. The free-space sensor network of claim 1 wherein each of the geographically distributed free-space sensors comprises at least one of an imaging sensor and a spectral sensor.

3. The free-space sensor network of claim 1 wherein the networking apparatus comprises at least one free-space optical communications network for allowing a plurality of cooperative users to communicate, wherein said at least one free-space optical communications network comprises a plurality of free-space multi-channel relay converters for tracking the plurality of cooperative users and a connection system for aligning the plurality of free-space multi-channel relay converters with one another to allow the plurality of cooperative users to communicate.

4. The free-space sensor network of claim 1 wherein the networking apparatus comprises at least one processor.

5. The free-space sensor network of claim 1 wherein the target information device comprises at least one of a display, an audio device, a processor, an aircraft, a spacecraft, a satellite, a rocket, a missile, a ship, a submarine, a tank, and a vehicle.

6. The free-space sensor network of claim 1 wherein the at least one communication link comprises at least one of an optical laser and a radio frequency link.

7. The free-space sensor network of claim 1 wherein the free-space sensor network is at least one of in, over, under, and on at least one of space, air, ground, and water.

8. A free-space combat sensor network comprising:

a plurality of geographically distributed free-space sensors for sensing at least one combat target;

a networking apparatus for combining sensed information regarding the at least one combat target from the geographically distributed free-space sensors, wherein the networking apparatus comprises at least one free-space optical communications network for allowing a plurality of cooperative users to communicate;

a combat target information device for communicating to at least one user combined sensed information regarding the at least one combat target, from the geographically distributed free-space sensors, provided by the networking apparatus; and

at least one communication link connecting in free-space said geographically distributed sensors, said networking apparatus, and said combat target information device.

9. The free-space combat sensor network of claim 8 wherein each of the geographically distributed free-space sensors comprises at least one of an imaging sensor and a spectral sensor.

10. The free-space combat sensor network of claim 8 wherein said at least one free-space optical communications network comprises a plurality of free-space multi-channel relay converters for tracking the plurality of cooperative users and a connection system for aligning the plurality of free-space multi-channel relay converters with one another to allow the plurality of cooperative users to communicate.

11. The free-space combat sensor network of claim 8 wherein the networking apparatus comprises at least one processor.

12. The free-space combat sensor network of claim 8 wherein the combat target information device comprises at least one of a display, an audio device, a processor, an aircraft, a spacecraft, a satellite, a rocket, a missile, a ship, a submarine, a tank, and a vehicle.

13. The free-space combat sensor network of claim 8 wherein the at least one communication link comprises at least one of an optical laser and a radio frequency link.

14. The free-space sensor network of claim 8 wherein the free-space combat sensor network is at least one of in, over, under, and on at least one of space, air, ground, and water.

15. A method of communicating over a free-space network, the method comprising:

sensing at least one target using a plurality of geographically distributed free-space sensors;

sending sensed target information regarding the at least one target from the geographically distributed free-space sensors over at least one communication link to a networking apparatus;

combining the sensed target information regarding the at least one target using the networking apparatus; and

communicating the combined sensed target information regarding the at least one target to a user through a target information device.

16. The method of claim 15 wherein the sensing step further comprises sensing at least one combat target using different types of geographically distributed free-space sensors comprising at least one of an imaging sensor and a spectral sensor.

17. The method of claim 15 wherein the sensed target information comprises at least one of a real-time location, a direction, an orientation, a speed, and an identification of said at least one target, and the communication link comprises at least one of an optical laser and a radio frequency link.

18. The method of claim 15 wherein the networking apparatus comprises at least one of a processor and a free-space optical communications network, wherein said at least one free-space optical communications network comprises a plurality of free-space multi-channel relay converters and a connection system comprising an internal alignment reference and steering mirrors.

19. The method of claim 15 wherein the target information device comprises at least one of a display, an audio device, a processor, an aircraft, a spacecraft, a satellite, a rocket, a missile, a ship, a submarine, a tank, and a vehicle.

20. The method of claim 15 wherein the method is used to communicate information regarding a combat target to a friendly user at least one of in, over, under, and on at least one of space, air, ground, and water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2008
From: HUNT, JEFFREY H.
To: THE BOEING COMPANY
Reel/Frame 021882/0516 →
Continuity (1)
Related Publication 20100272443A1 · Oct 28, 2010