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Improvement of stability for vertical take-off of an insect-mimicking flapping-wing system.

, , , , and . URAI, page 872. IEEE, (2011)

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Performance of a Piezo-composite generating element., , and . URAI, page 203-204. IEEE, (2011)An Insect-Like Flapping-Wing Device Actuated by a Compressed Unimorph Piezoelectric Composite Actuator., , , and . Intelligent Unmanned Systems, volume 192 of Studies in Computational Intelligence, Springer, (2009)Development of a peristaltic micropump for bio-medical applications based on mini LIPCA, , and . CoRR, (2008)A motor-driven flapping-wing system mimicking beetle flight., , , , and . ROBIO, page 1087-1092. IEEE, (2009)An Insect-Mimicking Flapping System Actuated by A Piezoceramic Actuator., , , , and . ROBIO, page 451-456. IEEE Computer Society, (2006)Flapping frequency and resonant frequency of insect wings., and . URAI, page 29-31. IEEE, (2013)The dynamic characteristics of LIPCA and its application for mimicking insect flapping motion., , , and . IROS, page 131-136. IEEE, (2008)Improvement of stability for vertical take-off of an insect-mimicking flapping-wing system., , , , and . URAI, page 872. IEEE, (2011)Development of a small autonomous flying robot with four-rotor system., and . ICAR, page 150-154. IEEE, (2011)Dynamic Characteristics and Damage Detection of a Metallic Thermal Protection System Panel Using a Three-Dimensional Point Tracking Method and a Modal Assurance Criterion., and . Sensors, 20 (24): 7185 (2020)