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Imaging lidar system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01C-003/08
  • H04N-007/00
출원번호 US-0565631 (1990-08-10)
발명자 / 주소
  • Kaman Charles H. (Farmington CT) Ulich Bobby L. (Tuscon AZ) Mayerjak Robert (Torrington CT) Schafer George (Somers CT)
출원인 / 주소
  • Kaman Aerospace Corporation (Colorado Springs CO 02)
인용정보 피인용 횟수 : 36  인용 특허 : 0

초록

An airborne imaging lidar (light detection and ranging) sensor is provided which employs multiple pulsed laser transmitters, multiple gated and intensified array camera receivers, an optical scanner for increased field of regard, and a computer for system control, automatic target detection and disp

대표청구항

An apparatus for detecting and imaging an object enveloped by a backscattering medium which is at least partially transmitting to light comprising: generating means for selectively generating short pulses of light; mirror means in optical communication with said generating means, said mirror means r

이 특허를 인용한 특허 (36)

  1. Pack, Robert Taylor; Pack, Frederick Brent, 3D multispectral lidar.
  2. Zhu, Xiaoxun; Au, Ka Man; Germaine, Gennady; Good, Timothy A.; Schnee, Michael; Scott, Ian; Groot, John; Wilz, Sr., David M.; Rockstein, George B.; Blake, Robert E.; Dickson, LeRoy; Knowles, Carl Har, AUTOMATED METHOD OF AND SYSTEM FOR DIMENSIONING OBJECTS OVER A CONVEYOR BELT STRUCTURE BY APPLYING CONTOURING TRACING, VERTICE DETECTION, CORNER POINT DETECTION, AND CORNER POINT REDUCTION METHODS TO.
  3. Zhu, Xiaoxun; Au, Ka Man; Germaine, Gennady; Good, Timothy A.; Schnee, Michael; Scott, Ian; Groot, John; Wilz, Sr., David M.; Rockstein, George B.; Blake, Robert E.; Dickson, LeRoy; Knowles, Carl Har, AUTOMATED METHOD OF AND SYSTEM FOR DIMENSIONING OBJECTS TRANSPORTED THROUGH A WORK ENVIRONMENT USING CONTOUR TRACING, VERTICE DETECTION, CORNER POINT DETECTION, AND CORNER POINT REDUCTION METHODS ON .
  4. Landau, Uzi, Airborne laser image capturing system and method.
  5. Zhu,Xiaoxun; Au,Ka Man; Germaine,Gennady; Good,Timothy A.; Schnee,Michael; Scott,Ian; Groot,John; Wilz, Sr.,David M.; Rockstein,George B.; Blake,Robert E.; Dickson,LeRoy; Knowles,Carl Harry, Automated method of and system for dimensioning objects over a conveyor belt structure by applying contouring tracing, vertice detection, corner point detection, and corner point reduction methods to two-dimensional range data maps of the space above the conveyor belt captured by an amplitude modulated laser scanning beam.
  6. Nunnally William C., Buried object detection and neutralization system.
  7. Bowker, J. Kent; Lubard, Stephen C.; McLean, John W., Confocal-reflection streak lidar apparatus with strip-shaped photocathode, for applications at a wide range of scales.
  8. Embry, Carl, Continuous index of refraction compensation method for measurements in a medium.
  9. Embry, Carl, Continuous index of refraction compensation method for measurements in a medium.
  10. Lemelson ; deceased Jerome H. ; Lemelson ; executrix by Dorothy ; Pedersen Robert D. ; Pedersen Steven R., Friend or foe detection system and method and expert system military action advisory system and method.
  11. Lemelson Jerome H. ; Lemelson Dorothy ; Pedersen Robert D. ; Pedersen Steven R., Friend or foe detection system and method and expert system military action advisory system and method.
  12. Remillard, Jeffrey Thomas; Weber, Willes H., GPS-based anti-blinding system for active night vision.
  13. Scheps, Richard, High resolution imaging lidar for detecting submerged objects.
  14. Perry, Michael D., High-resolution imaging and target designation through clouds or smoke.
  15. Smitherman, Chester L.; McCoy, Joseph; Tilley, James; Baro, Mohan, Infrastructure mapping system and method.
  16. O'Keeffe, James Thomas, LIDAR with enhanced utilization of a remotely located mirror.
  17. Cho,Young chul; Chang,Seok mo, Laser straight ruler and method for measuring distance and projecting line using the straight ruler.
  18. O'Keeffe, James Thomas, Lidar with smart safety-conscious laser intensity.
  19. Joslin, Erin; Buck, Heidi; Cole, Jason; Garcia, Daniel; Hobbs, Stephen; Stastny, John, Method for classifying vessels using features extracted from overhead imagery.
  20. Tu,Peter Henry; Brooksby,Glen William, Method for the extraction of image features caused by structure light using template information.
  21. Strand, Michael P., Method of generating images to aid in the detection of manmade objects in cluttered underwater environments.
  22. Mai,Tuy Vu, Method of using a self-locking travel pattern to achieve calibration of remote sensors using conventionally collected data.
  23. Raskar, Ramesh; Velten, Andreas, Methods and apparatus for ultra-fast camera.
  24. Basu Santanu, Multiplexer for laser ranging devices and the like.
  25. Newbury, Nathan R.; Coddington, Ian; Swann, William C., Optical frequency comb-based coherent LIDAR.
  26. Peters, III, Leo J.; Smitherman, Chester L., Retinal concave array compound camera system.
  27. Smitherman, Chester L., Self-calibrated, remote imaging and data processing system.
  28. Smitherman, Chester L., Self-calibrated, remote imaging and data processing system.
  29. Smitherman, Chester L., Self-calibrated, remote imaging and data processing system.
  30. Aumont, Gerard; Fontaine, Bernard, Site head with integrated laser designator for use in aircraft such as a rotorcraft.
  31. Ulich Bobby L. (Tucson AZ) Smith Duane (Tucson AZ) Keeler R. Norris (McLean AZ), Spectrally dispersive imaging lidar system.
  32. Harrison Richard W. ; Scarzello John F., Submerged object detection and classification system.
  33. Estes, Lee E; Doyle, Stephen B, Surface vessel wake detection.
  34. Roskovensky, John K.; Nandy, Prabal; Post, Brian N, Thermal wake/vessel detection technique.
  35. Rappaport Saul ; Wyntjes Geert ; Shepherd Orr, Three-dimensional imaging system.
  36. Hudson, Jerry Wade; Hudson, Virginia; O'Toole, Michael J., Ultraviolet plant eradication apparatus and method.
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