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Application of piezo-composite actuator to control surface of small missile robot.

, , and . ROBIO, page 1591-1595. IEEE, (2007)

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Development of Bio-mimetic composite wing structures and experimental study on flapping characteristics., , and . ROBIO, page 25-30. IEEE, (2007)Development of a small air robot with fixed wing and semi-autopilot system., and . ROBIO, page 1821-1826. IEEE, (2007)Designing Cicada-Mimetic Flapping Wing with Composite Wing Structure and Application to Flapping MAV., and . Intelligent Unmanned Systems, volume 192 of Studies in Computational Intelligence, Springer, (2009)Investigation of ground effect on aerodynamic forces and three-dimensional flow structures for a flapping wing., , , and . URAI, page 738-740. IEEE, (2013)Development of small flying robot with rotary wing and autonomous control system., , and . ROBIO, page 1815-1820. IEEE, (2007)An Insect-Mimicking Flapping System Actuated by A Piezoceramic Actuator., , , , and . ROBIO, page 451-456. IEEE Computer Society, (2006)Design and analysis of a locomotive module for snake-mimetic robots using mini-LIPCAs., , and . MFI, page 131-136. IEEE, (2008)Application of piezo-composite actuator to control surface of small missile robot., , and . ROBIO, page 1591-1595. IEEE, (2007)An improved design of Piezo-Composite Actuator used as the artificial muscle for bio-inspired robots., , and . ROBIO, page 7-12. IEEE, (2007)Modeling of unmanned small scale rotorcraft based on Neural Network identification., , , and . ROBIO, page 1938-1943. IEEE, (2008)