A Novel Aerial-Aquatic Unmanned Vehicle Using Flapping Wings for Underwater Propulsion. [PDF]
He J +6 more
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Aerial monitoring of turkey behavior using unmanned aerial vehicles and computer vision. [PDF]
Calderone G +4 more
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Stability and Controller Research of Double-Wing FMAV System Based on Controllable Tail. [PDF]
Zhang Y +7 more
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Hydrodynamic Mechanisms Underlying the Burying Behavior of Benthic Fishes: Numerical Simulation and Orthogonal Experimental Study. [PDF]
Xie H, Wang X, Li M, Wang Y, Xing F.
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Distinguishing a Drone from Birds Based on Trajectory Movement and Deep Learning. [PDF]
Nesteruk A +5 more
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Deciphering the flapping frequency allometry: unveiling the role of sustained body attitude in the aerodynamic scaling of normal hovering animals. [PDF]
Pohly J, Kang CK, Aono H.
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Attention-Based Multi-Objective Control for Morphing Aircraft. [PDF]
Fu Q, Sun C.
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Signatures of Motion: Decomposition of Adaptive Morphing Flight in Harris’ Hawks
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Optimization design and analysis of the flapping-wing robotic aircraft
Proceedings of the 2019 International Conference on Robotics, Intelligent Control and Artificial Intelligence, 2019The flapping-wing robotic aircraft achieve the purpose of flight by imitating the flapping of bird wings in nature, which has wide application prospect. According to the bionics principle, this paper designs a small flapping-wing robotic aircraft with high flexibility, and it is driven by three motors.
Chun Zhao, Jun Zhong, Chao Wang
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Dynamics and Control of a Flexible Flapping Wing Aircraft
Applied Mechanics and Materials, 2012To investigate the aerodynamic performance of a flexible flapping wing aircraft, a flapping-wing system were design and an experiment were set up to measure the unsteady aerodynamic forces of the flapping motion. The thrust formula and resistance formula described aerodynamic forces.
Zhuang Zhao +3 more
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