PPO-Based Reinforcement Learning Control of a Flapping-Wing Robot with a Bio-Inspired Sensing and Actuation Feather Unit. [PDF]
Hussain S, Messaoudi M, Imran M, Tang D.
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Hybrid LQR-H<sub>2</sub> Control of a Kestrel-Based Ornithopter with a Nature-Inspired Flow Control Device for Gust Mitigation. [PDF]
Hussain S, Hennache A, Abbasi N, Xu D.
europepmc +1 more source
Flapping-wing robot achieves bird-style self-takeoff by adopting reconfigurable mechanisms. [PDF]
Chen A +5 more
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Mechanical intelligence for artificial wings: A philosophy for multifold high-degree morphing with its mechanisms analogous to biology. [PDF]
Luo B, Wei Li.
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Additively Manufactured Dragonfly-Inspired Wings for Bio-Faithful Flapping MAV Development. [PDF]
Prisăcariu EG +6 more
europepmc +1 more source
Prediction and Measurement of Hovering Flapping Frequency Under Simulated Low-Air-Density and Low-Gravity Conditions. [PDF]
Lim H, Ha G, Park HC.
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The Structural Design and Optimization of a Novel Independently Driven Bionic Ornithopter. [PDF]
Dai M +6 more
europepmc +1 more source
Micro-Doppler radar deception and camouflage of airborne targets. [PDF]
Kozlov V +6 more
europepmc +1 more source
Adaptive control strategies for button motor actuated insect scale flapping wing MAV mechanisms. [PDF]
Singh S +7 more
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A Review of Bio-Inspired Perching Mechanisms for Flapping-Wing Robots. [PDF]
Speciale C +3 more
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