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Analysis of active vibration control in smart structures by ANSYS

机译:基于ANSYS的智能结构主动振动控制分析。

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摘要

It is possible to model smart structures with piezoelectric materials using the product ANSYS/Multiphysics. In this study, the integration of control actions into the ANSYS solution is realized. First, the procedure is tested on the active vibration control problem with a two-degrees of freedom system. The analytical results obtained by the Laplace transform method and by ANSYS are compared. Then, the smart structures are studied by ANSYS. The input reference value is taken as zero in the closed loop vibration control. The instantaneous value of the strain at the sensor location at a time step is subtracted from zero to find the error signal value. The error value is multiplied by the control gain to calculate the voltage value which is used as the input to the actuator nodes. The process is continued with the selected time step until the steady-state value is approximately reached. The results are obtained for the structures analyzed in other studies. The active vibration control of a circular disc is also studied.
机译:使用ANSYS / Multiphysics产品可以用压电材料对智能结构进行建模。在这项研究中,实现了将控制动作集成到ANSYS解决方案中。首先,该程序针对具有两自由度系统的主动振动控制问题进行了测试。比较了通过Laplace变换方法和ANSYS获得的分析结果。然后,通过ANSYS对智能结构进行了研究。在闭环振动控制中,输入参考值设为零。从零中减去某个时间步在传感器位置处的应变的瞬时值,以找到误差信号值。误差值乘以控制增益可计算出用作执行器节点输入的电压值。以选定的时间步长继续该过程,直到近似达到稳态值为止。结果是针对其他研究中分析的结构获得的。还研究了圆盘的主动振动控制。

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