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Guidance and Control of an Autonomous Soaring UAVThermals caused by convection in the lower atmosphere are commonly used by birds and glider pilots to extend flight duration, increase cross-country speed, improve range, or simply to conserve energy. Uninhabited Aerial Vehicles (UAVs) can also increase performance and reduce energy consumption by exploiting atmospheric convection. An autonomous soaring research project was conducted at the NASA Dryden Flight Research Center to evaluate the concept through flight test of an electric-powered motorglider with a wingspan of 4.27 m (14 ft). The UAV's commercial autopilot software was modified to include outer-loop soaring guidance and control. The aircraft total energy state was used to detect and soar within thermals. Estimated thermal size and position were used to calculate guidance commands for soaring flight. Results from a total of 23 thermal encounters show good performance of the guidance and control algorithms to autonomously detect and exploit thermals. The UAV had an average climb of 172 m (567 ft) during these encounters.
Document ID
20070022339
Acquisition Source
Armstrong Flight Research Center
Document Type
Technical Memorandum (TM)
Authors
Allen, Michael J.
(NASA Dryden Flight Research Center Edwards, CA, United States)
Lin, Victor
(NASA Dryden Flight Research Center Edwards, CA, United States)
Date Acquired
August 23, 2013
Publication Date
April 1, 2007
Subject Category
Aircraft Stability And Control
Report/Patent Number
H-2714
NASA/TM-2007-214611/REV1
Report Number: H-2714
Report Number: NASA/TM-2007-214611/REV1
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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