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首页> 外文期刊>Journal of Sound and Vibration >Multi-mode passive piezoelectric shunt damping by means of matrix inequalities
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Multi-mode passive piezoelectric shunt damping by means of matrix inequalities

机译:通过矩阵不等式的多模无源压电分流分流阻尼

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This paper deals with the use of matrix inequalities for the aim of multi-modal piezoelectric shunt damping. The paper shows that the shunt impedance can be seen as a controller in a state space model of the electro-mechanical system; this makes it possible to use the mentioned approach to find the layout of the impedance for different kinds of control problems. The particular focus is on passive multi-mode vibration control with the aim of finding the optimal shunt impedance among the passive and realizable candidates. The proposed method overcomes most of the problems related to the development of the optimal shunt electrical network, which arise when using the most common shunt design strategies for multi-mode control. The results were validated experimentally and compared to well-established methods for multi-mode shunt damping. The proposed method proved to be effective, and the results demonstrate the capability of the matrix inequality approach to provide attenuation levels that are usually higher than those from the reference methods. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文涉及使用矩阵不等式来实现多模态压电分流阻尼。本文表明,分流阻抗可以看作是机电系统的状态空间模型中的控制器;这使得可以使用所提到的方法来找到用于不同类型的控制问题的阻抗的布局。特定的重点是被动多模振动控制,目的是找到被动和可实现的候选者之间的最佳分流阻抗。所提出的方法克服了与最佳分流电网的开发相关的大多数问题,这在使用多模式控制的最常见的分流设计策略时出现。结果通过实验验证,并与多模分流阻尼的良好方法进行了验证。所提出的方法证明是有效的,结果证明了基质不等式方法提供通常高于来自参考方法的衰减水平的能力。 (c)2017年Elsevier B.V.保留所有权利。

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