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Drag force fault extension to evolutionary model consistency checking for a flapping-wing micro air vehicle.

, , , , and . CEC, page 3961-3968. IEEE, (2016)

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Evolving non-autonomous neuromorphic flight control for a flapping-wing mechanical insect., and . WEAH, page 9-16. IEEE, (2009)A Reconfigurable Continuous Time Recurrent Neural Network for Evolvable Hardware Applications., , and . Evolvable Hardware, page 247-250. IEEE Computer Society, (2005)Improved Control System for Analyzing and Validating Motion Controllers for Flapping Wing Vehicles., , , and . RiTA, volume 274 of Advances in Intelligent Systems and Computing, page 557-567. Springer, (2013)A 2D Vibration Array as an Assistive Device for Visually Impaired., , and . BIBE, page 930-937. IEEE Computer Society, (2007)Evolutionary strategy approach for improved in-flight control learning in a simulated Insect-Scale Flapping-Wing Micro Air Vehicle., , , and . ICES, page 211-218. IEEE, (2014)A Reconfigurable Analog Neural Network for Evolvable Hardware Applications: Intrinsic Evolution and Extrinsic Verification., , and . IEEE Congress on Evolutionary Computation, page 3145-3152. IEEE, (2006)Evolved neuromorphic flight control for a flapping-wing mechanical insect model., and . IEEE Congress on Evolutionary Computation, page 1744-1751. IEEE, (2008)Islands of fitness compact genetic algorithm for rapid in-flight control learning in a Flapping-Wing Micro Air Vehicle: A search space reduction approach., , , and . ICES, page 219-226. IEEE, (2014)A Perceptual Computing based Gesture Controlled Quadcopter for Visual Tracking and Transportation., , and . Int. J. Monit. Surveillance Technol. Res., 3 (2): 57-67 (2015)Improving In-Flight Learning in a Flapping Wing Micro Air Vehicle., , , , and . Int. J. Monit. Surveillance Technol. Res., 4 (1): 62-75 (2016)