A BIOMIMETIC, ENERGY-HARVESTING, OBSTACLE-AVOIDING,...

A BIOMIMETIC, ENERGY-HARVESTING, OBSTACLE-AVOIDING, PATH-PLANNING ALGORITHM FOR UAVs

Snorri Gudmundsson
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This dissertation presents two new approaches to energy harvesting for Unmanned Aerial Vehicles (UAV). One method is based on the Potential Flow Method (PFM); the other method seeds a wind-field map based on updraft peak analysis and then applies a variant of the Bellman-Ford algorithm to find the minimum-cost path. Both methods are enhanced by taking into account the performance characteristics of the aircraft using advanced performance theory. The combined approach yields five possible trajectories from which the one with the minimum energy cost is selected. The dissertation concludes by using the developed theory and modeling tools to simulate the flight paths of two small Unmanned Aerial Vehicles (sUAV) in the 500 kg and 250 kg class. The results show that, in mountainous regions, substantial energy can be recovered, depending on topography and wind characteristics. For the examples presented, as much as 50% of the energy was recovered for a complex, multi-heading,multi-altitude, 170 km mission in an average wind speed of 9 m/s.

Năm:
2016
Nhà xuát bản:
Snorri Gudmundsson
Ngôn ngữ:
english
Trang:
421
File:
PDF, 11.23 MB
IPFS:
CID , CID Blake2b
english, 2016
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