Патент США № | 10198011 |
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Автор(ы) | DeBitetto и др. |
Дата выдачи | 05 февраля 2019 г. |
This document describes an unmanned aerial vehicle (UAV) configured to navigate an unmanned aerial vehicle highway. The UAV includes a navigation system that includes a sensor, configured to gather environmental data, and a computing system configured to navigate the UAV. The computing system compares the environmental data to a specified data signature in the one or more spectra and determines a position of the unmanned aerial vehicle in the unmanned aerial vehicle highway. The UAV includes a hybrid generator system including an engine configured to generate mechanical energy and a generator motor coupled to the engine and configured to generate electrical energy from the mechanical energy generated by the engine. The UAV includes a rotor motor configured to drive a propeller to rotate. The navigation system is powered by the electrical energy generated by the generator motor.
Авторы: | Paul A. DeBitetto (Malden, MA), Long N. Phan (Malden, MA), Scott Rasmussen (Andover, MA), Sanjay Sarma (Lexington, MA) | ||||||||||
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Патентообладатель: |
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Заявитель: | Top Flight Technologies, Inc. (Malden, MA) |
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ID семейства патентов | 64902696 | ||||||||||
Номер заявки: | 16/029,383 | ||||||||||
Дата регистрации: | 06 июля 2018 г. |
Document Identifier | Publication Date | |
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US 20190011934 A1 | Jan 10, 2019 | |
Application Number | Filing Date | Patent Number | Issue Date | ||
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62529081 | Jul 6, 2017 | ||||
Класс патентной классификации США: | 1/1 |
Класс совместной патентной классификации: | G05D 1/101 (20130101); B64C 39/024 (20130101); B64D 27/02 (20130101); G01C 21/005 (20130101); G05D 1/102 (20130101); G06N 3/08 (20130101); B64C 2201/12 (20130101); B64C 2201/042 (20130101); B64C 2201/044 (20130101); B64D 2027/026 (20130101); B64C 2201/024 (20130101) |
Класс международной патентной классификации (МПК): | G05D 1/10 (20060101); B64C 37/02 (20060101); B64D 27/02 (20060101); G01C 21/00 (20060101); G06N 3/08 (20060101); B64C 39/02 (20060101) |
9764837 | September 2017 | Phan |
2015/0226559 | August 2015 | Waite et al. |
2016/0003631 | January 2016 | Lucent |
2016/0140851 | May 2016 | Levy et al. |
2016/0341823 | November 2016 | Gerry et al. |
2016/0376005 | December 2016 | Phan et al. |
2017/0142596 | May 2017 | Priest et al. |
102788579 | Nov 2012 | CN | |||
WO-2017100579 | Jun 2017 | WO | |||
Konam, "Vision-Based Navigation and Deep-Learning Explanation for Autonomy." In: The Robotics Institute School of Computer Science, Carnegie Mellon University, May 2017 [online] [retrieved on Nov. 1, 2018] Retrieved from the Internet <URL: https://www.ri.cmu.edu/publications/vision-based-navigation-and-deep-lear- ning-explanation-for-autonomy/. cited by applicant . International Search Report and Written Opinion for App. Ser. No. PCT/US18/41105, dated Oct. 30, 2018, 17 pages. cited by applicant. |