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Post-mission high accuracy position and orientation system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01S-019/41
  • G01S-019/40
출원번호 US-0690287 (2010-01-20)
등록번호 US-8232917 (2012-07-31)
발명자 / 주소
  • Scherzinger, Bruno M.
  • Hutton, Joseph J.
  • Vollath, Ulrich
출원인 / 주소
  • Trimble Navigation Limited
대리인 / 주소
    Perkins Coie LLP
인용정보 피인용 횟수 : 8  인용 특허 : 33

초록

A method of generating post-mission position and orientation data comprises generating position and orientation data representing positions and orientations of a mobile platform, based on global navigation satellite system (GNSS) data and inertial navigation system (INS) data acquired during a data

대표청구항

1. A GNSS-AINS post-processing system comprising: a VRS module to input rover GNSS observables previously acquired and recorded by a GNSS subsystem on an aircraft during a data acquisition period, the VRS module including a network module to input a set of reference GNSS observables acquired during

이 특허에 인용된 특허 (33)

  1. Kuroda Yuichi (Yokohama JPX) Mizuna Yoshikatsu (Yokohama JPX), Aircraft position monitoring system.
  2. Tsai, Ting Yi; Lu, Kuen Ruey; Liu, I Ru; Liu, Te Yao, Dual-mode location position system.
  3. Dong An ; Ching-Fang Lin, Filtering mechanization method of integrating global positioning system receiver with inertial measurement unit.
  4. Ching-Fang Lin, Fully-coupled positioning process and system thereof.
  5. Lin Ching-Fang, Fully-coupled positioning process and system thereof.
  6. Ching-Fang Lin, Fully-coupled vehicle positioning method and system thereof.
  7. Draganov,Alexander, GPS accumulated delta range processing for navigation applications.
  8. Robbins, James E., GPS correction methods, apparatus and signals.
  9. Lemelson Jerome H. ; Pedersen Robert D., GPS vehicle collision avoidance warning and control system and method.
  10. Coatantiec,Jacques; Guillard,Patrice, Hybrid inertial navigation system with improved integrity.
  11. John W. Diesel, Integrated inertial/GPS navigation system.
  12. Allison Michael Timo, Long baseline RTK using a secondary base receiver and a non-continuous data link.
  13. Eschenbach Ralph, Method and apparatus for collecting, processing and distributing differential global positioning system information using the internet.
  14. Tucker, Terry A.; Coleman, Albert L., Method and apparatus for improving performance of an inertial navigation system having global positioning system corrections.
  15. Wilson Raymond P,NZX ; Longaker Harold L., Method and apparatus for navigation guidance.
  16. Heppe, Stephen B.; Gauksheim, Kristoffer, Method and apparatus for satellite-based relative positioning of moving platforms.
  17. Breed, David S.; Johnson, Wendell C.; Castelli, Vittorio; Seitz, William E.; DuVall, Wilbur E., Method and arrangement for mapping a road.
  18. O'Meagher,Brent, Method and system for delivering virtual reference station data.
  19. Breed,David S., Method and system for detecting objects external to a vehicle.
  20. Eschenbach, Ralph, Method and system for providing wide area augmentation system (WAAS) like corrections using a server and processor on the internet.
  21. Eschenbach, Ralph, Method and system for providing wide area augmentation systems (WAAS) like corrections using a server and processor on the internet.
  22. Large,Peter; Kirk,Geoffrey R.; Allison,Michael Timo, Method and system for variable data rate transmission in RTK GPS survey system.
  23. Hatch,Ronald R.; Stephens,Scott Adam, Method for combined use of a local positioning system, a local RTK system, and a regional, wide-area, or global carrier-phase positioning system.
  24. Sharpe,Richard T.; Nelson,Frederick W.; Pickett,Terence D.; Hatch,Ronald R.; Yang,Yunchun, Method for combined use of local positioning system and a global positioning system.
  25. Tankhilevich Boris G. ; Allison Michael Timo, Monitor and remote control via long baseline RTK.
  26. Rapoport, Lev Borisovich; Zinoviev, Alexei Eugenyevich, Position estimation using a network of a global-positioning receivers.
  27. Ching-Fang Lin, Positioning and data integrating method and system thereof.
  28. Lin Ching-Fang, Positioning process and system thereof.
  29. Scherzinger, Bruno M.; Hutton, Joseph J.; Vollath, Ulrich, Post-mission high accuracy position and orientation system.
  30. Ching-Fang Lin, Real-time integrated vehicle positioning method and system with differential GPS.
  31. Kozlov Dmitry,RUX ; Povaliaev Alexander,RUX ; Rapoport Lev,RUX ; Sila-Novitsky Stanislav,RUX ; Yefriemov Vladimir,RUX, Relative position measuring techniques using both GPS and GLONASS carrier phase measurements.
  32. Kozlov Dmitry,RUX ; Povaliaev Alexander,RUX ; Rapoport Lev,RUX ; Sila-Novitsky Stanislav,RUX ; Yefriemov Vladimir,RUX, Relative position measuring techniques using both GPS and GLONASS carrier phase measurements.
  33. Kirk, Geoffrey R.; Muncy, Darin; Paiva, Joseph V. R.; Large, Peter, Seamless surveying system.

이 특허를 인용한 특허 (8)

  1. Branch, Charles, Controlling power dissipation in a base station of a navigation satellite system (NSS).
  2. Jinkins, Richard D.; Rademaker, Richard M.; Woodell, Daniel L.; Shishlov, Sergey B., Display system and method using weather radar sensing.
  3. McCusker, Patrick D.; Jinkins, Richard D.; Rademaker, Richard M., Enhanced flight vision system and method with radar sensing and pilot monitoring display.
  4. Jinkins, Richard D.; Gavrilets, Vladislav; Rademaker, Richard M.; Woodell, Daniel L.; Jourdan, Damien B.; Doty, James H., System and method for doppler aided navigation using weather radar.
  5. McCusker, Patrick D.; Chaigneau, Bertrand; Itcia, Eric, System and method for ground navigation.
  6. Wood, Robert B.; Tiana, Carlo L.; Kowash, Nathaniel S.; Jinkins, Richard D.; Rademaker, Richard M., System for and method of radar data processing for low visibility landing applications.
  7. Jinkins, Richard D.; Rademaker, Richard M.; Woodell, Daniel L.; Doty, James H.; Kerley, Keith L.; Young, Jr., James Alva; Young, Shih-Yih, Voting system and method using doppler aided navigation.
  8. Jinkins, Richard D.; Rademaker, Richard M., Weather radar enabled low visibility operation system and method.
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