Design and Implementation of Position Detection System Based on 3-UPU Parallel Mechanism

Xiaojuan Shi, Didi Chen
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Abstract

For the position detection problem of 3-UPU parallel mechanism, most of detection methods are less targeted, slow in detection speed or poor in adaptability. To solve these problems, the paper proposes a method of quadruplicated frequency. This method achieves the frequency subdivision, phase discrimination and count functions. This method improves the resolution of the photoelectric encoder and achieve the high-precision position detection. The simulation platform is designed and built in Quartus-II software environment and CPLD (Complex Programmable Logic Device) EPM240T100C5N is selected to build experiment platform. The simulation and experimental data show the validity, reliability and rapidity of this method. The method of quadruplicated frequency can acquire accurate real-time coordinates, so the position control accuracy of the parallel mechanism can be enhanced.
基于3-UPU并联机构的位置检测系统设计与实现
对于3-UPU并联机构的位置检测问题,大多数检测方法针对性不强,检测速度慢或适应性差。为了解决这些问题,本文提出了一种四倍频法。该方法实现了分频、鉴相和计数功能。该方法提高了光电编码器的分辨率,实现了高精度的位置检测。仿真平台在Quartus-II软件环境下设计搭建,实验平台选用CPLD (Complex Programmable Logic Device) EPM240T100C5N。仿真和实验数据表明了该方法的有效性、可靠性和快速性。四倍频法可以获得精确的实时坐标,从而提高并联机构的位置控制精度。
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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