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Pneumatic active suspension system for a one-wheel car model using fuzzy reasoning and a disturbance observer

机译:基于模糊推理和扰动观测器的单轮汽车气动主动悬架系统

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This paper presents the construction of a pneumatic active suspension system for a one-wheel car model using fuzzy reasoning and a disturbance observer. The one-wheel car model can be approximately described as a nonlinear two degrees of freedom system subject to excitation from a road profile. The active control is composed of fuzzy and disturbance controls, and the active control force is constructed by actuating a pneumatic actuator. A phase lead-lag compensator is inserted to counter the performance degradation due to the delay of the pneumatic actuator The experimental result indicates that the proposed active suspension improves much the vibration suppression of the car model.
机译:本文提出了一种使用模糊推理和扰动观测器的单轮汽车模型气动主动悬架系统的构造。单轮汽车模型可以近似地描述为受到道路轮廓激励的非线性两自由度系统。主动控制由模糊和扰动控制组成,主动控制力是通过驱动气动执行器来构成的。插入了相位超前补偿器以抵消由于气动执行器的延迟而导致的性能下降。实验结果表明,所提出的主动悬架大大改善了汽车模型的振动抑制效果。

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