2024
DOI: 10.1038/s44172-024-00201-8
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Deep learning reduces sensor requirements for gust rejection on a small uncrewed aerial vehicle morphing wing

Kevin P. T. Haughn,
Christina Harvey,
Daniel J. Inman

Abstract: Uncrewed aerial vehicles are integral to a smart city framework, but the dynamic environments above and within urban settings are dangerous for autonomous flight. Wind gusts caused by the uneven landscape jeopardize safe and effective aircraft operation. Birds rapidly reject gusts by changing their wing shape, but current gust alleviation methods for aircraft still use discrete control surfaces. Additionally, modern gust alleviation controllers challenge small uncrewed aerial vehicle power constraints by relyi… Show more

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