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Active vibration suppression of a 1D piezoelectric bimorph structure using model predictive sliding mode control

机译:基于模型预测滑模控制的一维压电双压电晶片结构的主动振动抑制

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This paper investigates application of a control algorithm called model predictive sliding mode control (MPSMC) to active vibration suppression of a cantilevered aluminum beam. MPSMC is a relatively new control algorithm where model predictive control is employed to enhance sliding mode control by enforcing the system to reach the sliding surface in an optimal manner. In previous studies, it was shown that MPSMC can be applied to reduce hysteretic effects of piezoelectric actuators in dynamic displacement tracking applications. In the current study, a cantilevered beam with unknown mass distribution is selected as an experimental test bed in order to verify the robustness of MPSMC in active vibration control applications. Experimental results show that MPSMC can reduce vibration of an aluminum cantilevered beam at least by 29% regardless of modified mass distribution.
机译:本文研究了一种称为模型预测滑模控制(MPSMC)的控制算法在悬臂铝梁的主动振动抑制中的应用。 MPSMC是一种相对较新的控制算法,其中模型预测控制用于通过以最佳方式强制系统到达滑动表面来增强滑动模式控制。在先前的研究中,已证明MPSMC可用于减少动态位移跟踪应用中压电致动器的磁滞效应。在当前的研究中,选择未知质量分布的悬臂梁作为实验测试台,以验证MPSMC在主动振动控制应用中的鲁棒性。实验结果表明,无论质量分布如何变化,MPSMC都可以将铝悬臂梁的振动至少降低29%。

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