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This paper studies the energy-saving potentials of tilt-rotor drones under the presence of wind disturbances. Owing to the symmetry of the problem, a mathematical model including simple computational fluid dynamics (CFD) analysis-based aerodynamics is first presented. To deal with the minimum energy problem, a minimum energy super-twisting algorithm (STA) is used for stabilization around any desired pitch angle, while the extremum-seeking approach is employed to calculate the optimal pitch angle to minimize the consumed energy in real-time. Numerical simulation and comparison studies with both a conventional quadrotor and a tilt-quadrotor stabilized at zero pitch angle show that the proposed method exhibits an interesting potential in terms of energy consumption, thus resulting in the possibility for greater flight durations.
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Eliker et al. (Tue,) studied this question.
synapsesocial.com/papers/68e664a3b6db6435875f0c4e — DOI: https://doi.org/10.1109/icuas60882.2024.10557084
Karam Eliker
Denmark Technical College
Jérôme Jouffroy
University of Southern Denmark
Technical University of Denmark
University of Southern Denmark
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