IP Library Granted Patent US 7,693,426
Granted Patent B2
US 7,693,426 · App. 10/739,812 · Granted Apr 6, 2010

Laser-based communications with a remote information source

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Quick Facts
Patent No.
US 7,693,426
App. No.
10/739,812
Granted
Apr 6, 2010
Kind
B2
Abstract

System and techniques for transmitting information from a remote information source use a reflector for reflecting a laser beam or other light source back to its originating location. A reflector coupled to an information source receives a laser beam from a laser source. A movement of at least one surface of the reflector is controlled to modulate the laser beam, and the modulated laser beam is reflected toward the laser source. The modulated laser beam can be received by a receiver at or near the laser source to detect and decode data embedded in the modulated laser beam.

Claims (60)

1. A system for transmitting information from an information source, the system comprising:

a plurality of reflectors to be coupled to the information source; and

actuators associated with corresponding ones of the reflectors, the actuators configured to move the corresponding reflectors to frequency modulate different signals on a same laser beam by varying a distance traveled by the laser beam between a transmitter and a receiver, each of the signals frequency modulated by a different one of the reflectors;

wherein the reflectors are arranged to receive the laser beam having a frequency from the transmitter that is remote from the system; and

each of the reflectors to reflect a corresponding frequency-modulated laser beam to the receiver that is remote from the system.

2. The system of claim 1 wherein each of the reflectors is a corner reflector.

3. The system of claim 1 further comprising a processor configured to signal the actuators to control movement of the reflectors to frequency modulate the different signals on the laser beam.

4. The system of claim 1 further comprising a data source that produces information, wherein the modulation of the reflected laser beam from at least one of the reflectors embeds the information in the reflected laser beam.

5. The system of claim 1 further comprising a decoder to be coupled to the information source, wherein the decoder is configured to decode a signal embedded within the laser beam received from the transmitter.

6. The system of claim 1 further comprising a power source to be mounted on the information source, wherein the power source is operable to extract power from the laser beam received from the transmitter for use by the information source.

7. The system of claim 1 wherein:

the reflected laser beam from at least one of the reflectors is dispersed as a result of environmental conditions;

wherein the dispersed reflected laser beam is receivable by at least one of a plurality of receivers that are remote from the system.

8. The system of claim 1 wherein the reflectors make up an array of reflectors.

9. The system of claim 1 wherein at least one of the reflectors includes multiple reflective surfaces,

wherein the laser beam is reflected by the multiple reflective surfaces to create a corresponding reflected laser beam

wherein the multiple reflective surfaces are moveable individually to embed multiple signals within the corresponding reflected laser beam.

10. The system of claim 1 wherein each of the actuators includes a piezoelectric device that controls movement of the corresponding reflector.

11. The system of claim 1 wherein the information source comprises a satellite located in outer space.

12. The system of claim 1 wherein a fiber-optic communications protocol is used to modulate the reflected laser beam from at least one of the reflectors to embed a signal within the reflected laser beam.

13. The system of claim 1 , wherein the reflectors are moved by different amounts to provide different distances traveled by the laser beam through the corresponding reflectors.

14. A method for sending information from a remote information source, the method comprising:

receiving a laser beam from a laser source at a corner reflector, the laser beam having a frequency;

controlling movement of a plurality of surfaces of the corner reflector to vary the distance traveled by the laser beam between the laser source and the plurality of surfaces so as to frequency modulate different signals on the laser beam, each signal modulated by a different surface; and

reflecting the modulated laser beam toward the laser source using the corner reflector.

15. The method of claim 14 further comprising:

detecting a signal embedded within the received laser beam at the remote information source; and

decoding the signal embedded within the received laser beam.

16. The method of claim 14 wherein:

the reflected laser beam is received by a receiver at substantially the same location as the laser source; and

a modulated signal within the reflected laser beam is decoded by the receiver.

17. The method of claim 14 further comprising extracting power from the laser beam.

18. The method of claim 14 , wherein the corner reflector is at the remote information source, and the laser source is located at a location remote from the remote information source.

19. The method of claim 14 , wherein controlling movement of the plurality of surfaces of the corner reflector comprises individually and independently controlling movement of the plurality of surfaces.

20. The method of claim 19 , wherein controlling movement of the plurality of surfaces comprises controlling movement using a plurality of corresponding actuators.

21. An apparatus comprising

a first reflective surface:

a second reflective surface perpendicular to the first reflective surface;

a third reflective surface perpendicular to the first reflective surface and the second reflective surface; and

actuators operable to move the first reflective surface, the second reflective surface, and the third reflective surface to frequency modulate different signals on light incident on the reflective surfaces by varying a distance traveled by the light between a transmitter and a receiver, wherein the light is modulated in accordance with data signals.

22. The apparatus of claim 21 further comprising:

a data source operable to produce the data signals, and

a processor configured to use the data signals produced by the data source to signal the actuators to control the movement of the first, second, and third reflective surfaces.

23. The apparatus of claim 21 wherein:

each of the reflective surfaces includes a corresponding dedicated actuator; and

a processor is configured to independently control each of the dedicated actuators to independently control movement of the corresponding first, second, and third reflective surfaces.

24. The apparatus of claim 21 wherein the three reflective surfaces define a corner reflector, the apparatus further comprising:

an array of corner reflectors.

25. The apparatus of claim 24 wherein each corner reflector in the array of corner reflectors has a different orientation.

26. The apparatus of claim 24 wherein each particular actuator is operable to impart a modulated signal within a beam of light reflected from the corner reflector that corresponds to the particular actuator and the respective modulated signals imparted by at least two of the actuators differ.

27. The apparatus of claim 21 further comprising a data storage medium operable to store data included in the data signals.

28. A base station comprising:

a laser configured to generate a laser beam having a frequency;

a receiver;

a controller configured to aim the laser beam at a remote information source that includes a plurality of reflectors arranged to reflect the laser beam and to move the reflectors using corresponding actuators to frequency modulate different signals on the laser beam by varying the distance traveled by the laser beam between the laser and the receiver, wherein the laser beam is frequency modulated in accordance with selected data;

wherein the receiver is configured to receive the modulated, reflected laser beam; and

a demodulator configured to demodulate the received laser beam to retrieve the selected data.

29. The base station of claim 28 wherein each of the reflectors comprises a corner reflector.

30. The base station of claim 28 wherein the controller is further configured to cause the laser to modulate the laser beam, wherein the modulated laser beam includes embedded data for the remote information source.

31. The base station of claim 30 further comprising a decoder configured to determine a difference between the modulated, reflected laser beam received from the remote information source and the modulated laser beam generated by the laser.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2017
From: HEWLETT PACKARD ENTERPRISE DEVELOPMENT LP
To: ENT. SERVICES DEVELOPMENT CORPORATION LP
Reel/Frame 041041/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2015
From: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
To: HEWLETT PACKARD ENTERPRISE DEVELOPMENT LP
Reel/Frame 037079/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2009
From: ELECTRONIC DATA SYSTEMS, LLC
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 022449/0267 →
CHANGE OF NAME Recorded Mar 24, 2009
From: ELECTRONIC DATA SYSTEMS CORPORATION
To: ELECTRONIC DATA SYSTEMS, LLC
Reel/Frame 022460/0948 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2004
From: PEASE, DAVID M.
To: ELECTRONIC DATA SYSTEMS CORPORATION
Reel/Frame 014879/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2003
From: PEASE, DAVID M.
To: ELECTRONIC DATA SYSTEMS CORPORATION
Reel/Frame 014832/0454 →