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Optimal Position of Piezoelectric Elements in Flexible Structures Active Vibration Control

机译:压电元件在柔性结构主动振动控制中的最优位置

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Based on the Linear Quadratic Gauss (LQG) optimal control method, the paper introduces an effective procedure to suppress the vibration of flexible structures with the sensors/actuators are symmetrically collocated on both sides of the same position on the host structure. The model of a piezoelectric intelligent cantilever beam is built by the application of ANSYS software. The D-optimal design principle is adopted which is an optimal method which chosen by the maximum determinant of Fisher Information Matrix as the criteria function. Studies on the modes shapes and dynamic characteristics of the structure, and converts the selected modes into a unitary form by a simple method, the optimal position of the piezoelectric elements can be confirmed by the mode shapes of the structures. Finally, the paper takes a piezoelectric cantilever beam as an example and gives the step response of the system, the results show the effectiveness of this method.
机译:基于线性二次高斯(LQG)最优控制方法,本文介绍了一种有效的程序,该方法通过将传感器/执行器对称地并置在主机结构上相同位置的两侧来抑制柔性结构的振动。应用ANSYS软件建立了压电智能悬臂梁模型。采用D最优设计原理,这是由Fisher信息矩阵的最大决定因素作为标准函数选择的一种最优方法。研究结构的模式形状和动态特性,并通过简单的方法将选定的模式转换为单一形式,可以通过结构的模式形状确定压电元件的最佳位置。最后,以压电悬臂梁为例,给出了系统的阶跃响应,结果表明了该方法的有效性。

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