Claims
- 1. A system for measuring velocity, comprising:
a power source configured to provide a current; a laser emitting device powered by the current and configured to emit a laser signal; a frequency modulating section configured to frequency modulate the laser signal; an optics assembly configured to split the frequency modulated signal into a plurality of laser signals, and to direct the split signals to a target and to receive at least one signal reflected from the target; a combining section configured to combine one of the split signals transmitted via one signal path and the at least one reflected signal transmitted via another signal path; a detector configured to detect the combined signal; and a signal processor configured to extract velocity information from the detected signal.
- 2. The system of claim 1, wherein the laser emitting device and the detector are configured together in a laser assembly.
- 3. The system of claim 2, wherein the frequency modulating section is located in the laser assembly.
- 4. The system of claim 1, wherein the combining section is configured to receive the one of the split signals and the at least one reflected signal, and to multiply the received signals so as to provide the combined signal.
- 5. The system of claim 1, wherein the laser emitting device comprises a laser diode.
- 6. The system of claim 1, wherein the signal processor is further configured to extract distance information toward the target from the velocity information.
- 7. The system of claim 1, further comprising a quadrature mixer configured to process the detected signal adapted to be used in the signal processor, wherein the signal processor is a conventional Doppler signal processor.
- 8. The system of claim 1, wherein the extracted velocity information comprises the magnitude and direction of the velocity of the target.
- 9. A method of measuring velocity, comprising:
emitting a laser signal; frequency modulating the laser signal; splitting the frequency modulated signal into a plurality of laser signals; directing the split signals to a target; receiving at least one signal reflected from the target; combining one of the split signals transmitted via one signal path and the at least one reflected signal transmitted via another signal path; detecting the combined signal; and extracting velocity information from the detected signal.
- 10. The method of claim 9, wherein the combining comprises sampling one of the split signals and at least one reflected signal, and multiplying the sampled signals.
- 11. The method of claim 10, wherein the multiplying comprises summing the sampled signals and squaring the sum.
- 12. The method of claim 10, further comprising generating a voltage signal that is proportional to the multiplied signal.
- 13. The method of claim 12, wherein the extracting comprises processing the voltage signal so as to obtain a Doppler frequency including sign.
- 14. The method of claim 9, further comprising calculating distance information toward the target from the velocity information.
- 15. A system for measuring velocity, comprising:
a laser emitting device configured to emit a laser signal; a frequency modulating section configured to perform frequency modulation on the emitted laser signal; an optics assembly configured to split the frequency modulated signal into a plurality of laser signals, and to direct the split signals to a target and to receive at least one signal reflected from the target; a detector configured to detect a combined signal of one of the split signals transmitted via one signal path and the at least one reflected signal transmitted via another signal path; and a signal processor configured to extract velocity information from the detected signal.
- 16. The system of claim 15, wherein the laser emitting device and the detector are configured together in a laser assembly.
- 17. The system of claim 15, wherein the detector comprises a detector diode.
- 18. The system of claim 15, further comprising a sinusoidal wave generator configured to generate a sinusoidal wave, wherein the frequency modulating section is configured to frequency modulate the laser signal with the sinusoidal wave.
- 19. A system for measuring velocity, comprising:
a laser emitting device configured to generate a frequency-modulated laser signal; an optics assembly configured to split the frequency modulated signal into a plurality of laser signals, and to direct the split signals to a target and to receive at least one signal reflected from the target; a combiner configured to receive one of the split signals transmitted via one signal path and the at least one reflected signal transmitted via another signal path, and to multiply the received signals; and a signal processor configured to extract velocity information from the multiplied signal.
- 20. The system of claim 19, wherein the laser emitting device and the combiner are configured together in a laser assembly.
- 21. The system of claim 19, wherein the combiner comprises a detector.
- 22. A method of measuring velocity, comprising:
generating a frequency-modulated laser signal; splitting the frequency modulated signal into a plurality of laser signals; directing the split signals to a target; receiving at least one signal reflected from the target; combining one of the split signals transmitted via one signal path and the at least one reflected signal transmitted via another signal path; and extracting velocity information from the combined signal.
- 23. The method of claim 22, wherein the combining comprises receiving the one of the split signals and the at least one reflected signal, and multiplying the received signals.
- 24. The method of claim 22, further comprising detecting the combined signal, wherein the extracting is from the detected signal.
- 25. The method of claim 22, further comprising extracting distance information toward the target from the velocity information.
- 26. A system for measuring velocity, comprising:
a laser device configured to generate a frequency-modulated laser signal, the frequency modulated signal being directed to a target and reflected from the target; a detector configured to detect a combined signal of the frequency-modulated laser signal transmitted via one signal path and at least one reflected signal transmitted via another signal path; and a signal processor configured to extract velocity information from the detected signal.
- 27. The system of claim 26, wherein the laser device and the detector are configured together in a laser assembly.
- 28. The system of claim 26, further comprising a combiner configured to receive the frequency-modulated laser signal and the at least one reflected signal and to multiply the received signals so as to provide the combined signal.
- 29. The system of claim 28, wherein the detector is further configured to produce a voltage signal that is proportional to the multiplied signal.
- 30. The system of claim 26, wherein the detector comprises a detector diode.
- 31. The system of claim 26, further comprising an optics assembly configured to split the frequency modulated signal into a plurality of laser signals, and to direct the split signals to the target and receive at least one signal reflected from the target.
- 32. The system of claim 31, wherein the optics assembly comprises:
a power splitter configured to split the frequency-modulated laser signal into first and second split signals having different signal paths from each other; and a collimator configured to collimate and direct the first split signal to the target, and to collimate and direct a reflected laser signal to the detector, wherein the detector is configured to detect a combined signal of the reflected laser signal and the second split signal.
- 33. The system of claim 32, further comprising a circulator configured to receive and route the first split laser signal toward the collimator and to receive and route the reflected signal toward the detector.
- 34. The system of claim 32, wherein the collimator comprises:
a first collimator configured to collimate and direct the first split signal to the target; and a second collimator configured to collimate and direct a reflected laser signal to the detector.
- 35. The system of claim 34, further comprising a switch configured to switch the first split laser signal between the power splitter and the first and second collimators.
- 36. A method of measuring velocity, comprising:
generating a frequency-modulated laser signal, wherein the frequency modulated signal is directed to a target and reflected from the target; combining the frequency-modulated laser signal transmitted via one signal path and at least one reflected signal transmitted via another signal path; and extracting velocity information from the combined signal.
- 37. The method of claim 36, wherein the combining comprises sampling the frequency-modulated laser signal and at least one reflected signal, and multiplying the sampled signals so as to provide the combined signal.
- 38. The method of claim 37, wherein the multiplying comprises summing the sampled signals and squaring the sum.
- 39. The method of claim 37, further comprising producing a voltage signal that is proportional to the multiplied signal, wherein the extracting is from the produced voltage signal.
- 40. The method of claim 36, further comprising detecting the combined signal.
- 41. A method of measuring velocity, comprising:
frequency modulating a laser signal, the frequency modulated signal being split into a plurality of laser signals and directed to a target, and reflected from the target; receiving one of the split signals transmitted via one signal path and at least one reflected signal transmitted via another signal path; multiplying the received signals; and extracting velocity information from the multiplied signal.
- 42. The method of claim 41, wherein the multiplying comprises summing the received signals and squaring the sum.
- 43. The method of claim 41, further comprising producing a voltage signal that is proportional to the multiplied signal, wherein the extracting is from the produced voltage signal.
- 44. The method of claim 41, further comprising filtering an amplitude modulation component that has been incidentally generated.
- 45. A system for measuring velocity, comprising:
a laser-emitting device configured to emit a laser signal; a frequency modulating section configured to perform frequency modulation on the laser signal, wherein the frequency-modulated laser signal is directed toward a moving target; a power splitter configured to split the frequency-modulated laser signal into first and second laser signals, wherein one of the laser signals is delayed with respect to the other; a combiner configured to receive and combine reflected signals from the target so as to provide a combined signal; and a signal processor configured to extract velocity information from the combined signal.
- 46. The system of claim 45, further comprising a detector configured to detect the combined signal.
- 47. A method of measuring velocity, comprising:
frequency modulating a laser signal, the frequency modulated signal being split into a plurality of laser signals; directing the split laser signals to a target; combining one of the split laser signals with a reflected signal from the target; and extracting velocity information from the combined signal.
- 48. The method of claim 47, wherein the combining comprises receiving the one of the split laser signals and the reflected signal, and multiplying the received signals so as to provide the combined signal.
- 49. The method of claim 47, further comprising detecting the combined signal.
- 50. A system for measuring velocity, comprising:
a laser assembly configured to generate a frequency-modulated laser signal, the frequency-modulated signal being split into a plurality of laser signals and directed to a target, and reflected from the target, wherein the laser assembly is configured to receive one of the split signals transmitted via one signal path and at least one reflected signal transmitted via another path, and to combine the received signals; and a signal processor configured to extract velocity information from the combined signal.
- 51. The system of claim 50, wherein the laser assembly comprises:
a laser emitting device configured to emit a laser signal; a frequency modulating section configured to perform frequency modulation on the emitted laser signal; and a combiner configured to receive and combine the one of the split signals and the at least one reflected signal.
- 52. The system of claim 50, wherein the laser assembly comprises:
a laser emitting device configured to emit a laser signal; a frequency modulating section configured to perform frequency modulation on the emitted laser signal; and a detector configured to receive the one of the split signals and the at least one reflected signal, and to multiply the received signals so as to provide the combined signal.
- 53. A system for measuring velocity, comprising:
means for generating a frequency-modulated laser signal, the frequency modulated signal being split into a plurality of laser signals and directed to a target, and reflected from the target; means for receiving one of the split signals transmitted via one signal path and at least one reflected signal transmitted via another signal path; means for multiplying the received signals; and means for extracting velocity information from the multiplied signal.
- 54. A method of measuring velocity, comprising:
generating a frequency-modulated laser signal, the frequency-modulated signal being directed to a target; and measuring the velocity of the target based on a combination of the frequency- modulated laser signal and a reflected signal from the target.
- 55. The method of claim 54, wherein the measuring the velocity comprises measuring the velocity of one of the following targets: a moving vehicle, a cable being extruded from a die, a sheet metal being rolled through a roller, a cable being transferred between two spools, a surface of liquid, a vibrating object, a rotating machinery, or a ground moving with respect to a vehicle.
- 56. The method of claim 55, further comprising obtaining the distance toward the target from the measured velocity.
- 57. The method of claim 54, wherein the measuring comprises sensing a ground velocity of the target on the order of micrometers per second at acoustic frequencies from 50 Hz to 1 kHz.
- 58. The method of claim 54, further comprising using interferometic or heterodyne sensing of the reflected laser signal.
- 59. The method of claim 54, wherein the measuring the velocity comprises measuring a closing velocity of two aircrafts or measuring a ground velocity of an aircraft or a missile.
- 60. A method of measuring velocity and distance, comprising:
generating a frequency-modulated laser signal, the frequency-modulated signal being directed to a target; measuring the velocity of the target based on a combination of the frequency- modulated laser signal and a reflected signal from the target; and obtaining the distance to the target by the measured velocity.
- 61. The method of claim 60, wherein the measuring comprises measuring the speed and direction of motion of a ground vehicle that aids a fire control or navigation system, or permits dead reckoning.
RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(e) from U.S. provisional application No. 60/384,526 filed May 29, 2002, which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60384526 |
May 2002 |
US |