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DETERMINATION OF STATE SPACE MATRICES FOR ACTIVE VIBRATION CONTROL USING ANSYS FINITE ELEMENT PACKAGE

机译:使用ANSYS有限元软件包确定主动振动控制的状态空间矩阵

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This paper concerns optimal placement of discrete piezoelectric sensors and actuators for active vibration control, using a genetic algorithm based on minimization of linear quadratic index as an objective function. A new method is developed to get state space matrices for simple and complex structures with bonded sensors and actuators, using the ANSYS finite element package taking into account piezoelectric mass, stiffness and electromechanical coupling effects. The state space matrices for smart structures are highly important in active vibration control for the optimisation of sensor and actuator locations and investigation of open and closed loop system control response, both using simulation and experimentally. As an example, a flexible flat plate with bonded sensor/actuator pairs is represented in ANSYS using three dimensional SOLID45 elements for the passive structure and SOLID5 for the piezoelectric elements, from which the necessary state space matrices are obtained. To test the results, the plate is mounted as a cantilever and two sensor/actuator pairs are located at the optimal locations. These are used to attenuate the first six modes of vibration using active vibration reduction based on a classical and optimal linear quadratic control scheme. The plate is subject to forced vibration at the first, second and third natural frequencies and represented in ANSYS using a proportional derivative controller and compared with a Matlab model based on ANSYS state space matrices using linear quadratic control. It is shown that the ANSYS state space matrices describe the system efficiently and correctly.
机译:本文涉及使用基于线性二次指数最小化的遗传算法作为目标函数的,用于主动振动控制的分立压电传感器和执行器的最佳布置。利用ANSYS有限元软件包,考虑了压电质量,刚度和机电耦合效应,开发了一种新方法来获得具有粘合传感器和执行器的简单和复杂结构的状态空间矩阵。智能结构的状态空间矩阵在主动振动控制中,对于优化传感器和执行器的位置以及研究开环和闭环系统控制响应(无论是通过仿真还是实验方法)都非常重要。例如,在ANSYS中使用传感器/执行器对结合的柔性平板,使用三维SOLID45元素(用于无源结构)和SOLID5(用于压电元件),从中获得必要的状态空间矩阵。为了测试结果,将板安装为悬臂并将两个传感器/执行器对放置在最佳位置。这些用于通过基于经典和最佳线性二次控制方案的主动减振来衰减前六个振动模式。该板在第一,第二和第三固有频率上受到强迫振动,并使用比例导数控制器在ANSYS中表示,并与使用线性二次控制的基于ANSYS状态空间矩阵的Matlab模型进行比较。结果表明,ANSYS状态空间矩阵有效,正确地描述了系统。

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