Патент США № | 8463534 |
---|---|
Автор(ы) | Spinelli и др. |
Дата выдачи | 11 июня 2013 г. |
An aircraft position synchronization system and methods for coordinating positioning of vehicles in motion are presented. A rabbit calculation module calculates a planned position on an orbit pattern of an aircraft in flight, and a planned position-time projection vector comprising a planned velocity vector of the planned position. A display module graphically displays the orbit pattern, the planned position and the planned velocity vector of the planned position moving in real-time along the orbit pattern. The display module further displays the planned position-time projection vector, an actual position of the aircraft, and an actual position-time projection vector of the aircraft based on a bank angle of the aircraft such that a user determines the planned position on the planned position-time projection vector of the aircraft in order to arrive at a predetermined position at a correct time. A rendezvous module coordinates the aircraft with a second aircraft in flight.
Авторы: | Charles B. Spinelli (Bainbridge Island, WA), Glenn Hanbey (Auburn, WA) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Патентообладатель: |
|
||||||||||
Заявитель: | The Boeing Company (Chicago, IL) |
||||||||||
ID семейства патентов | 45315458 | ||||||||||
Номер заявки: | 12/945,856 | ||||||||||
Дата регистрации: | 13 ноября 2010 г. |
Document Identifier | Publication Date | |
---|---|---|
US 20120123668 A1 | May 17, 2012 | |
Класс патентной классификации США: | 701/120; 244/135A; 342/29; 701/14; 701/16; 701/3; 701/467 |
Класс совместной патентной классификации: | G05D 1/104 (20130101) |
Класс международной патентной классификации (МПК): | G08G 5/00 (20060101); G05D 1/00 (20060101); B64D 39/00 (20060101); G01S 13/00 (20060101); G01C 23/00 (20060101); G06F 19/00 (20060101) |
Область поиска: | ;244/289,118.5,135A,174.2,181,183,195,76R ;315/167,291 ;324/207.18,207.26,330 ;340/568.1,815.55,853.5,909,945,947,961,967,968,970,971,972,973,974,976,979,980,988,995.26,995.27 ;342/18,26B,29,30,33,35,357.29,357.3,357.4,357.41,357.48,357.59,357.62,36,401,407,408,411,413,42,423,451,455,53,54,55,63 ;345/102,156,27,421,473,619,633,638,690,8,9 ;348/113,117,118,32,51,742,139,146,43 ;382/103,240,242 ;434/11,2,239,35,37,51 ;701/11,110,120,123,14,16,2,23,24,3,300,301,4,400,411,418,454,455,458,466,467,468,469,470,472,475,480,489,492,5,500,506,514,528,532,533,538,541,7,8,9,94 |
5451963 | September 1995 | Lempicke |
5781146 | July 1998 | Frederick |
5828332 | October 1998 | Frederick |
6262679 | July 2001 | Tran |
6405107 | June 2002 | Derman |
6489898 | December 2002 | Nicholls |
6633810 | October 2003 | Qureshi et al. |
6678587 | January 2004 | Miller |
7474962 | January 2009 | Waid et al. |
7689328 | March 2010 | Spinelli |
7798449 | September 2010 | Small et al. |
2002/0193915 | December 2002 | Miller |
2003/0193411 | October 2003 | Price |
2004/0122567 | June 2004 | Gaier |
2006/0212182 | September 2006 | Shaw |
2010/0030401 | February 2010 | Rogers et al. |
2012/0123668 | May 2012 | Spinelli et al. |
2012/0153084 | June 2012 | Etzkorn et al. |
Brian S. Burns, Major, USAF Autonomous Unmanned Aerial Vehicle Rendezvous for Automated Aerial Refueling--Thesis Air Force Institute of Technology, Air University pp. 6-10. cited by examiner . "KC-10 Air Refueling Rendezvous without Electronic Emission"; Leuschen, Michael W.; Williams, Paul; AIR Command and Staff Coll Maxwell AFB AL--Report No. 88/1575; Defense Technical Information Center--ADA192522; Apr. 1988. cited by applicant . Extended European Search Report mailed on Mar. 5, 2012. cited by applicant . Jourdan et al, "Trajectory design and vehicle guidance for a mid-air rendezvous between two autonomous aircraft", thesis, MIT, Mar. 1, 2006. cited by applicant . Burns B S et al, "Autonomous control for automated aerial refueling with minimum time rendezvous, AIAA Guidance, Navigation and Control conference" vol. 4, Aug. 20, 2007, AIAA 2007-6739, pp. 3683-3701. cited by applicant . Takeshi Yamasaki et al. "Sliding mode based pure pursuit guidance for UAV rendezvous and chase with a cooperative aircraft", 2010 American Control Conference, IEEE, Piscataway, NJ, USA, Jun. 30, 2010, pp. 5544-5549. cited by applicant. |