Патент США № | 10878706 |
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Автор(ы) | Saunders |
Дата выдачи | 29 декабря 2020 г. |
The present disclosure is directed to systems and methods for trajectory and route planning including obstacle detection and avoidance for an aerial vehicle. For example, an aerial vehicle's flight control system may include a trajectory planner that may use short segments calculated using an iterative Dubins path to find a first path between a start point and an end point that does not avoid obstacles. Then the trajectory planner may use a rapidly exploring random tree algorithm that uses points along the first path as seed points to find a trajectory or route between the start point and end point that avoids known or detected obstacles.
Авторы: | Jeffery Saunders (Manassas, VA) | ||||||||||
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Патентообладатель: |
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Заявитель: | Aurora Flight Sciences Corporation (Manassas, VA) |
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ID семейства патентов | 68280884 | ||||||||||
Номер заявки: | 16/158,987 | ||||||||||
Дата регистрации: | 12 октября 2018 г. |
Document Identifier | Publication Date | |
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US 20200118446 A1 | Apr 16, 2020 | |
Класс патентной классификации США: | 1/1 |
Класс совместной патентной классификации: | G08G 5/045 (20130101); G05D 1/101 (20130101); G05D 1/0202 (20130101); G01C 21/20 (20130101); G05D 1/0088 (20130101); G08G 5/0069 (20130101); G08G 5/0034 (20130101) |
Класс международной патентной классификации (МПК): | G08G 5/00 (20060101); G05D 1/00 (20060101); G05D 1/02 (20200101); G08G 5/04 (20060101) |
8038062 | October 2011 | Kenefic |
8437890 | May 2013 | Anderson et al. |
9262929 | February 2016 | Roy et al. |
9411335 | August 2016 | Kim |
9557742 | January 2017 | Paduano et al. |
2015/0100194 | April 2015 | Terada |
2015/0226575 | August 2015 | Rambo |
2015/0276411 | October 2015 | Savarit |
2015/0356875 | December 2015 | Sane |
2016/0048132 | February 2016 | Cherepinsky |
2017/0168485 | June 2017 | Berntorp et al. |
2017/0193830 | July 2017 | Fragoso et al. |
2018/0196435 | July 2018 | Kunzi et al. |
108458717 | Aug 2018 | CN | |||
Dubins, L.E. (Jul. 1957). "On Curves of Minimal Length with a Constraint on Average Curvature, and with Prescribed Initial and Terminal Positions and Tangents," American Journal of Mathematics. 79 (3): 497-516. cited by applicant . Satyanarayana G. Manyam, Sivakumar Rathinam, David Casbeer, Eloy Garcia, "Shortest Paths of Bounded Curvature for the Dubins Interval Problem," https://www.researchgate.net/publication/280497994, Jul. 2015. cited by applicant . Sertac Karaman ,Emilio Frazzoli, "Incremental Sampling-based Algorithms for Optimal Motion Planning", arXiv:1005.0416v1, May 3, 2010. cited by applicant . Brunner Michael et al: "Hierarchical Rough Terrain Motion Planning Using an Optimal Sampling-Based Method," 2013 IEEE International Conference on Robotics and Automation (ICRA); May 6-10, 2013; Karlsruhe, Germany, IEEE, US, May 6, 2013 (May 6, 2013), pp. 5539-5544, XP032505899, ISSN: 1050-4729, 001: 10.11 09/ICRA. 2013.6631372 ISBN: 978-1-4673-5641-1 [retrieved on Oct. 13, 2013]. cited by applicant . Lugo-Cardenas Israel et al: "Dubins Path Generation for a Fixed Wing Uav", 2014 International Conference on Unmanned Aircraft Systems (ICUAS), IEEE, May 27, 2014 (May 27, 2014), pp. 339-346, XP03261 0453, 001: 10.11 09/ICUAS.2014.6842272 [retrieved on Jun. 23, 2014]. cited by applicant . Extended European search report for EU application No. 19202806.6, dated Mar. 23, 2020. cited by applicant. |