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A survey of recent innovations in vibration damping and control using shunted piezoelectric transducers

机译:使用并联压电换能器的减振和控制的最新创新研究

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摘要

Research on shunted piezoelectric transducers, performed mainly over the past decade, has generated new opportunities for control of vibration and damping in flexible structures. This is made possible by the strong electromechanical coupling associated with modern piezoelectric transducers. In vibration control applications, a piezoelectric transducer is bonded to, or embedded in a base structure. As the structure deforms, the piezoelectric element strains and converts a portion of the structural vibration energy into electrical energy. By shunting the piezoelectric transducer to an electrical impedance, a part of the induced electrical energy can be dissipated. Hence, the impedance acts as a means of extracting mechanical energy from the base structure. This paper reviews recent research related to the use of shunted piezoelectric elements for vibration damping and control. In particular, the paper presents an overview of the literature on piezoelectric shunt damping and discusses recent observations on the feedback nature of piezoelectric shunt damping systems.
机译:过去十年来主要对并联压电换能器进行研究,为控制挠性结构中的振动和阻尼带来了新的机遇。通过与现代压电换能器相关的牢固的机电耦合,使之成为可能。在振动控制应用中,压电换能器结合或嵌入基础结构中。随着结构变形,压电元件应变并将结构振动能量的一部分转换成电能。通过将压电换能器分流到电阻抗,可以消散一部分感应电能。因此,阻抗用作从基础结构提取机械能的手段。本文回顾了有关使用并联压电元件进行减振和控制的最新研究。特别是,本文介绍了有关压电并联阻尼系统的文献综述,并讨论了有关压电并联阻尼系统反馈特性的最新观察。

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