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The reduction of operational amplifier electrical outputs to improve piezoelectric shunts with negative capacitance

机译:运算放大器电输出的减少以改善具有负电容的压电分流器

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摘要

One way to enhance the performance of vibration control with piezoelectric shunt is to use a negative capacitance in the shunt circuit. This component is very effective and provides good results in terms of attenuation improvement without significantly increasing the complexity of the shunt network. However, negative capacitances are built using operational amplifiers and, in some applications, the risk of saturation of the outputs of the operational amplifier exists. This constitutes a non-negligible aspect since it leads to a non-proper functioning of the control system which significantly deteriorates the control performance or even triggers instability phenomena. In light of this limitation, this paper proposes strategies to decrease the outputs of the operational amplifier in order to reduce the risk of saturation acting just on the values of the circuit components, without worsening the attenuation performance. However, when the achievable reduction is not sufficient, it is also possible to act on other components accepting a deterioration of the attenuation performance. Guidelines are provided for properly choosing the best shunt circuit configuration accounting for both the extent of the operational amplifier outputs and the control performance. The paper also evidences that the mechanical part of the system cannot be neglected in the analysis when assessing the operational amplifier outputs. Furthermore, two different circuit types used to build the negative capacitance are compared in terms of output requirements. This analysis shows that there is no circuit always less demanding than the other and that the choice of the circuit is not always straightforward. Therefore, a multi-degree of freedom model is presented, which is essential to understand which configuration of the negative capacitance has to be used in a given engineering application. All the presented outcomes are validated through an experimental campaign. (c) 2021 Elsevier Ltd. All rights reserved.
机译:提高压电分流器振动控制性能的一种方法是在分流器电路中使用负电容。该组件非常有效,在不显著增加分流网络复杂性的情况下,在衰减改善方面提供了良好的效果。然而,负电容是使用运算放大器建立的,在某些应用中,存在运算放大器输出饱和的风险。这是一个不容忽视的方面,因为它会导致控制系统无法正常运行,从而显著降低控制性能,甚至引发不稳定现象。鉴于这一局限性,本文提出了降低运算放大器输出的策略,以降低仅作用于电路元件值的饱和风险,同时又不恶化衰减性能。然而,当可实现的降低还不够时,也可以对其他接受衰减性能恶化的组件采取行动。根据运算放大器输出范围和控制性能,为正确选择最佳并联电路配置提供了指南。本文还证明了在分析运算放大器输出时,不能忽略系统的机械部分。此外,根据输出要求,比较了用于构建负电容的两种不同电路类型。这一分析表明,没有哪个电路的要求总是比另一个电路低,而且电路的选择并不总是简单的。因此,提出了一个多自由度模型,这对于理解在给定的工程应用中必须使用哪种负电容配置至关重要。所有提出的结果都通过实验活动得到验证。(c)2021爱思唯尔有限公司保留所有权利。

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