Active damping of smart piezoelectric plates using variational approach

I. Sadek, I. Kucuk
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引用次数: 1

Abstract

The control of vibrations in rectangular plates by distributed piezoelectric actuators is studied using a variational approach. An optimization problem is formulated that consists of finding the control voltage applied to distributed piezoelectric patch actuators which suppresses the transient displacements and velocities of plates with least control effort. The solution method is based on a combination of eigenfunction expansion and variational approaches. The method of eigenfunction expansion is used to transform the equation of motion into a number of coupled ordinary differential equations. By utilizing the variational theory an explicit optimal control law is derived and the determination of the corresponding displacement and velocity is reduced to solving a set of ordinary differential equations. The effectiveness of the methodology is demonstrated by applying it to a square plate subjected to a single actuator.
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基于变分方法的智能压电板主动阻尼研究
采用变分方法研究了分布压电致动器对矩形板振动的控制。提出了一个优化问题,该问题包括找出用于分布式压电片驱动器的控制电压,以最小的控制力抑制板的瞬态位移和速度。求解方法是基于特征函数展开和变分方法的结合。采用本征函数展开的方法,将运动方程转化为若干耦合常微分方程。利用变分理论导出了显式最优控制律,并将位移和速度的确定简化为求解一组常微分方程。通过将该方法应用于单个驱动器作用下的方形板,证明了该方法的有效性。
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