Autonomous Control for Orographic Soaring of Fixed-Wing UAVs

Conference Paper (2023)
Author(s)

T. Suys (TU Delft - Control & Operations)

S. Hwang (TU Delft - Control & Simulation)

Guido C.H.E.De de Croon (TU Delft - Control & Simulation)

Bart D.W. Remes (TU Delft - Control & Simulation)

Research Group
Control & Simulation
Copyright
© 2023 T. Suys, S. Hwang, G.C.H.E. de Croon, B.D.W. Remes
DOI related publication
https://doi.org/10.1109/ICRA48891.2023.10161578
More Info
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Publication Year
2023
Language
English
Copyright
© 2023 T. Suys, S. Hwang, G.C.H.E. de Croon, B.D.W. Remes
Research Group
Control & Simulation
Pages (from-to)
5338-5344
ISBN (electronic)
9798350323658
Reuse Rights

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Abstract

We present a novel controller for fixed-wing UAVs that enables autonomous soaring in an orographic wind field, extending flight endurance. Our method identifies soaring regions and addresses position control challenges by introducing a target gradient line (TGL) on which the UAV achieves an equilibrium soaring position, where sink rate and updraft are balanced. Experimental testing validates the controller's effectiveness in maintaining autonomous soaring flight without using any thrust in a non-static wind field. We also demonstrate a single degree of control freedom in a soaring position through manipulation of the TGL.

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