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The Embedded On-Board Controller and Ground Monitoring System of a Flapping-Wing Aerial Vehicle.

, , , and . RCAR, page 72-77. IEEE, (2018)

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Two Experimental Methods to Test the Aerodynamic Performance of HITHawk., , , , , , and . ICIRA (3), volume 11742 of Lecture Notes in Computer Science, page 386-398. Springer, (2019)Ospreys-inspired Self-takeoff Strategy of An Eagle-scale Flapping-wing Robot: System Design and Flight Experiments., , , and . ICRA, page 3669-3675. IEEE, (2024)The Embedded On-Board Controller and Ground Monitoring System of a Flapping-Wing Aerial Vehicle., , , and . RCAR, page 72-77. IEEE, (2018)Design and Control of a Small Intelligent Camera Stabilizer for a Flapping-Wing Robotic Bird., , , , , , and . ICIRA (3), volume 11742 of Lecture Notes in Computer Science, page 362-375. Springer, (2019)A Pose Measurement Method of a Space Noncooperative Target Based on Maximum Outer Contour Recognition., , , , , and . IEEE Trans. Aerosp. Electron. Syst., 56 (1): 512-526 (2020)Control system of a small intelligent inspection robot for nuclear power plant use., , , and . ICIA, page 837-842. IEEE, (2015)A Kind of Large-Sized Flapping Wing Robotic Bird: Design and Experiments., , , and . ICIRA (3), volume 10464 of Lecture Notes in Computer Science, page 538-550. Springer, (2017)An Aerodynamics Calculation Method of a Flapping Wing Flying Robot Based on State-Space Airloads Theory., , , , , and . ROBIO, page 1821-1826. IEEE, (2019)