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VIBRATION CONTROL OF NONLINEAR ROTATING BEAM USING PIEZOELECTRIC ACTUATOR AND SLIDING MODE APPROACH

机译:压电致动器和滑模法的非线性旋转梁振动控制

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摘要

In this research, we develop a general methodology for the vibration control of nonlinear rotating beam. The dynamic model of a rotating Euler-Bernoulli beam integrated with piezoelectric actuator is formulated. An integral sliding mode control design is proposed for the vibration suppression of the system with nonlinear coupling effects between the hub rotation and the beam transverse vibration. The sliding surface is constructed using part of the system states, and the rotating hub dynamics is treated as the internal dynamics of the system under the condition that the states of the zero dynamics are bounded. The robust stability of the proposed controller is also guaranteed. A series of simulation studies demonstrate that the proposed control method can effectively suppress the beam vibrations induced by the hub rotation and the external disturbance.
机译:在这项研究中,我们开发了一种非线性旋转梁振动控制的通用方法。建立了集成压电致动器的旋转欧拉-伯努利梁的动力学模型。提出了一种整体滑模控制设计,以抑制轮毂旋转和横梁横向振动之间具有非线性耦合效应的系统的振动。使用部分系统状态构造滑动表面,并且在零动态状态为有界的情况下,将旋转的轮毂动力学视为系统的内部动力学。所提出的控制器的鲁棒稳定性也得到了保证。一系列的仿真研究表明,所提出的控制方法可以有效地抑制由于轮毂旋转和外部干扰引起的梁振动。

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