Desiginig of active vibration control system for smart structure 2-D with non-collocated piezo-elements

A. Koszewnik
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引用次数: 1

Abstract

To design vibration control system for flexible structures their mathematical model should be reduced. In the paper we consider the influence of the model reduction on the dynamics of the real closed-loop system. A SFSF smart plate as a TITO system is an object of consideration since we are able to formulate the exact analytical model of such structure. As a result of reduction the model with low frequency resonances is usually separated from the high frequency dynamics because high frequency part of the model is naturally strong damped. In order to estimate dynamical system for control purposes in the paper we applied a few orthogonal methods such as: modal and Schur decompositions. As it is shown all methods well calculate resonances frequencies but generate different anti-resonances frequencies. From control strategy in point of view of the flexible structures these anti-resonances have significantly influence on the stability and dynamics of the closed-loop systems.
二维非配位压电元件智能结构振动主动控制系统设计
为了设计柔性结构的振动控制系统,需要对其数学模型进行简化。本文考虑了模型约简对实际闭环系统动力学特性的影响。SFSF智能板作为TITO系统是一个考虑的对象,因为我们能够制定这种结构的精确解析模型。由于简化的结果,低频共振模型通常与高频动力学分离,因为模型的高频部分自然是强阻尼的。为了对动力系统进行估计以达到控制的目的,本文采用了模态分解和舒尔分解等正交方法。结果表明,所有方法都能很好地计算共振频率,但会产生不同的反共振频率。从柔性结构的控制策略来看,这些反谐振对闭环系统的稳定性和动力学特性有显著的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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