Tuning the Proportional-Integral-Derivative Control Parameters of Unmanned Aerial Vehicles Using Artificial Neural Networks for Point-to-Point Trajectory Approach. [PDF]
Ulu B +6 more
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Research on Deployable Wings for MAVs Bioinspired by the Hind Wings of the Beetle Protaetia brevitarsis. [PDF]
Sun J, Wang W, Li P, Zhang Z.
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Modeling and Closed Loop Flight Testing of a Fixed Wing Micro Air Vehicle. [PDF]
Kandath H +4 more
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Aerodynamic and Inertial Loading Effects of Insect-Inspired Appendages in Small Unmanned Aerial Vehicles. [PDF]
Ogunwa T, Chahl J.
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An Onboard Vision-Based System for Autonomous Landing of a Low-Cost Quadrotor on a Novel Landing Pad. [PDF]
Liu X, Zhang S, Tian J, Liu L.
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Feedforward-feedback-enhanced model-free adaptive iterative learning control with measurement disturbance and data dropout for an autonomous bus trajectory tracking system. [PDF]
Liu S, Huang W, Ren Y, Wang L, Ji H.
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Dynamin independent endocytosis is an alternative cell entry mechanism for multiple animal viruses. [PDF]
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MUN-FRL: A Visual-Inertial-LiDAR Dataset for Aerial Autonomous Navigation and Mapping. [PDF]
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Unsteady Aerodynamic Characteristics of The Flapping Wing Micro Air Vehicle (MAV)
Journal of Aerospace Sciences and Technologies, 2023Flapping wing propulsion is center of attention in the field of micro air vehicle research in recent years. Knowledge in unsteady aerodynamics is insufficient to design an efficient wing that produces the required lift and thrust force for the flapping wing micro air vehicle.
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Modal analysis and improvement of lightweight wings for micro air vehicle (MAV) applications
Journal of Mechanical Science and Technology, 2022Click on the DOI to access this article (may not be free). ; Micro air vehicles (MAVs) are small portable flying machines designed to perform some specific tasks. Presently, the MAVs are being highly considered in applications like defense, security, environment protection, wildlife conservation, toy industry, construction, traffic management, and at ...
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