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Active Vibration Suppression of a Motor-Driven Piezoelectric Smart Structure Using Adaptive Fuzzy Sliding Mode Control and Repetitive Control

机译:具有自适应模糊滑模控制和重复控制的电动压电智能结构的主动振动抑制

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In this paper, we report on the use of piezoelectric sensors and actuators for the active suppression of vibrations associated with the motor-driven rotation of thin flexible plate held vertically. Motor-driven flexible structures are multi-input multi-output systems. The design of active vibration-suppression controllers for these systems is far more challenging than for flexible structures with a fixed end, due to the effects of coupling and nonlinear vibration behavior generated in structures with poor damping. To simplify the design of the controller and achieve satisfactory vibration suppression, we treated the coupling of vibrations caused by the rotary motion of the thin flexible plate as external disturbances and system uncertainties. We employed an adaptive fuzzy sliding mode control algorithm in the design of a single-input–single-output controller for the suppression of vibrations using piezoelectric sensors and actuators. We also used a repetitive control system to reduce periodic vibrations associated with the repetitive motions induced by the motor. Experimental results demonstrate that the hybrid intelligent control approach proposed in this study can suppress complex vibrations caused by modal excitation, coupling effects, and periodic external disturbances.
机译:在本文中,我们报告了用压电传感器和致动器的使用,以实现与垂直保持的薄柔性板的电动机驱动旋转相关的振动的主动抑制。电动机驱动的灵活结构是多输入多输出系统。由于耦合和非线性振动特性的效果在阻尼不良,这些系统,这些系统的主动振动抑制控制器的设计远得比具有固定端的柔性结构更具统一性。为了简化控制器的设计并实现令人满意的振动抑制,我们处理了由薄柔性板的旋转运动引起的振动耦合作为外部干扰和系统的不确定性。我们采用自适应模糊滑模控制算法在设计单输入单输出控制器的设计中,用于使用压电传感器和致动器抑制振动。我们还使用重复的控制系统来减少与电动机引起的重复运动相关的周期性振动。实验结果表明,本研究提出的混合智能控制方法可以抑制由模态激发,耦合效应和周期性外部干扰引起的复杂振动。

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