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Longitudinal mode model-based controller design for tailless flapping wing robot with loop shaping compensator

Steven Aurecianus, Hoang Vu Phan, Taesam Kang, Hoon Cheol Park

发表年份
2020
引用次数
20

摘要

norm stability analyses. We observed that the stability of the closed loop controller is affected significantly by the dynamics that are incorporated. The PD controller gain with good robustness is selected based on the stability analysis. However, the low frequency gain of the PD controller was too small to attain the setpoint, although the stability margin was sufficiently high. A loop shaping compensator is designed and added to the control loop to improve the low frequency gain while sustaining the stability margin. The frequency and time domain analyses reveal that the proposed control loop can be used for stabilizing KUBeetle. To test the performance experimentally, we implemented the control loop in an onboard control system, which includes a microprocessor and MEMS sensors. The experimental results closely matched the simulation results, demonstrating that the proposed controller could maintain stability in a real system with high flapping noises.

关键词

Control theory (sociology)FlappingPhase marginOpen-loop controllerRobustness (evolution)EngineeringControl systemSetpointRobust controlController (irrigation)

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