Evaluation of the induced voltage in driven electrodes of piezoelectric tube actuators for sensorless nanopositioning

M. Mohammadzaheri, R. Tafreshi, Mohammad Mohammad-khorasani, M. Bazghaleh, S. Grainger
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引用次数: 1

Abstract

In piezoelectric tube actuators, there are a number of segments or electrodes, some of them, driver electrodes, are excited by applying electrical voltage. As a result, electrical voltage is induced in other electrodes. The measured voltage across driver and non-driver electrodes/segments are called the piezoelectric voltage and the induced voltage respectively. The induced voltage has been used in displacement estimation and control of piezoelectric tube actuators since 2006, while the piezoelectric voltage has been used for the same purpose since 1980's. However, the newly introduced signal of the induced voltage has never been critically assessed for piezoelectric tubes' displacement estimation and control purposes, particularly in comparison with the piezoelectric voltage, another easy to measure electrical signal; this article aims to present such an assessment. In this research, both signals were mapped into displacement through linear and nonlinear models. It was shown displacement can be estimated less accurately via the induced voltage compared to the piezoelectric voltage and the relationship of displacement with the induced voltage presents higher nonlinearity compared to one with the piezoelectric voltage.
无传感器纳米定位压电管致动器驱动电极感应电压的评估
在压电管执行器中,有许多电极,其中一些是驱动电极,通过施加电压来激励。结果,电压在其他电极中被感应。通过驱动电极和非驱动电极/段的测量电压分别称为压电电压和感应电压。自2006年以来,感应电压被用于压电管执行器的位移估计和控制,而压电电压自20世纪80年代以来一直用于压电管执行器的位移估计和控制。然而,新引入的感应电压信号从未被严格地评估用于压电管的位移估计和控制目的,特别是与压电电压这一易于测量的电信号进行比较;本文旨在提出这样一种评估。在本研究中,这两个信号都通过线性和非线性模型映射为位移。结果表明,与压电电压相比,感应电压对位移的估计精度较低,位移与感应电压的关系比压电电压的关系具有更高的非线性。
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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