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Finite element analysis of actively controlled smart plate with patched actuators and sensors

机译:具有贴片致动器和传感器的主动控制智能板的有限元分析

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摘要

The active vibration control of smart plate equipped with patched piezoelectric sensors and actuators is presented in this study. An equivalent single layer third order shear deformation theory is employed to model the kinematics of the plate and to obtain the shear strains. The governing equations of motion are derived using extended Hamilton's principle. Linear variation of electric potential across the piezoelectric layers in thickness direction is considered. The electrical variable is discretized by Lagrange interpolation function considering two-noded line element. Undamped natural frequencies and the corresponding mode shapes are obtained by solving the eigen value problem with and without electromechanical coupling. The finite element model in nodal variables are transformed into modal model and then recast into state space. The dynamic model is reduced for further analysis using Hankel norm for designing the controller. The optimal control technique is used to control the vibration of the plate.
机译:本研究介绍了配备有补丁压电传感器和致动器的智能板的主动振动控制。使用等效的单层三阶剪切变形理论用于模拟板的运动学并获得剪切菌株。使用延长汉密尔顿原则来源的运动方程。考虑在厚度方向上穿过压电层的电势的线性变化。通过考虑两点线元素的拉格朗日插值函数离散化电量。通过求解具有机电耦合的特征值问题,可以获得无透明的自然频率和相应的模式形状。节点变量中的有限元模型被转换为模态模型,然后重新进入状态空间。减少了动态模型以使用Hankel规范设计控制器的进一步分析。最佳控制技术用于控制板的振动。

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