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A Study on Precision Stage with Displacement Magnification Mechanism Using Flexure-Based Levers

机译:基于挠曲杆的带位移放大机构的精密平台研究

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摘要

This study presents a precision stage driven by a piezoelectric actuator and equipped with a displacement magnification mechanism for the purpose of easy displacement measurement. The displacement magnification mechanism consists of flexible hinges and lever mechanisms. The developed stage is able to provide accurate measurement by virtue of the displacement magnification mechanism, but it is exposed to severe residual vibration. In order to overcome the drawback, this study develops a method for reducing residual vibration by using a simulation model for the stage system that takes into account the dynamics of the system and the hysteretic characteristics of the piezoelectric actuator. The Bouc-Wen model is employed to represent the hysteretic characteristics of the actuator. A comparison between simulation and experiment is made to find the best simulation model for the developed system. Input shaping is applied to eliminate the residual vibration from the stage. An improved input shaper is designed to overcome the ineffectiveness of input shaping due to the hysteresis by using the proposed simulation model. Simulations and experiments prove that the proposed simulation model is very useful to investigate the system and that the proposed stage can provide accurate positioning with small residual vibration.
机译:这项研究提出了一种精密平台,该平台由压电致动器驱动,并配备了位移放大机构,以方便进行位移测量。位移放大机构由柔性铰链和杠杆机构组成。借助位移放大机构,已开发的位移台能够提供准确的测量结果,但会遭受严重的残留振动。为了克服该缺点,本研究开发了一种通过使用平台系统的仿真模型来减少残留振动的方法,该模型考虑了系统的动力学特性和压电致动器的磁滞特性。 Bouc-Wen模型用于表示执行器的磁滞特性。仿真和实验之间进行了比较,以找到针对已开发系统的最佳仿真模型。应用输入整形以消除平台上的残留振动。通过使用所提出的仿真模型,设计了一种改进的输入整形器,以克服由于磁滞引起的输入整形的无效性。仿真和实验证明,所提出的仿真模型对系统的研究非常有用,所提出的平台可以提供准确的定位,并且残余振动较小。

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