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Design of a positioning device using piezo element and investigation of a simple compensation method

机译:使用压电元素的定位装置设计及简单补偿方法的研究

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Demand for miniaturized and higher integration of various optical and electronic elements has increased along with the development and implementation of information technology in recent years. Holographic optical elements, which are attracting attention in the field of optical elements, can satisfy these demands. For this study, a prototype precision positioning device of a dual servo mechanism was designed and produced for microtrench processing. The coarse motion actuator incorporates a ball screw and a linear guide. Also, a laminated type piezoelectric actuator is used as a micro-motion actuator. A laser length measuring device was used to evaluate the precision positioning of the device. This study also examined a method for compensation of hysteresis by polynomial function fitted to displacement-voltage data and displacement characteristics of the piezoelectric element. Furthermore, for decreasing voltage, compensation by the lowest ordered second-order polynomial function must be preferred because no great difference in compensation performance was recognized in compensation by three different polynomials.
机译:随着近年来信息技术的开发和实施,对各种光学和电子元件的小型化和更高集成的需求增加。全息光学元件吸引光学元件领域的注意力,可以满足这些需求。对于该研究,设计并制造了双伺服机构的原型精密定位装置,用于微调加工。粗摩运动致动器包括滚珠丝杠和线性导向器。而且,层叠型压电致动器用作微观运动致动器。激光长度测量装置用于评估装置的精确定位。该研究还检查了一种通过装配到压电元件的位移电压数据和位移特性的多项式函数来补偿滞后的方法。此外,为了降低电压,通过最低有序的二阶多项式函数的补偿必须优选,因为在三种不同多项式的补偿中没有识别补偿性能的很大差异。

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