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Absolute rotary encoder system based on optical sensor for angular measurement

机译:基于光学传感器的角度测量绝对旋转编码器系统

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摘要

A goniometer is a device used to measure the angular range of motion of various human joints and muscle groups, such as the elbow, knee or waist. However, the majority of mechanical goniometers are heavy, provide inaccurate measurements and are affected by dust or stains. Electronic and optical fiber-based goniometers demonstrate better capability than their mechanical equivalents; however, due to their higher costs and complicated setup requirements, their usage is not viable. Optical-based encoder patterns were GC-ARE previously proposed and discussed in some studies. Such optical-based encoder patterns achieve the same angular resolution as traditional Gray code encoder patterns with many shortcomings, such as a high error rate and low tolerance, which arise as a result of the encoding method. This paper presents a design for a reliable and non-intrusive phase shift code absolute rotary encoder (PSC-ARE), which is based on an optical sensor, providing a low-cost, high-precision absolute rotary encoder system. An inexpensive optical mouse sensor is used to capture the code image and the phase shift code transforming time-domain data into frequency domain, which is used to decode the corresponding absolute angle. The PSC-ARE proposed in this study shows a performance improvement over conventional designs owing to the reduced interference from dust and other environmental particles and provides lower sensitivity to calibration errors. Furthermore, the proposed design is not only more compact and portable than the traditional goniometer, and it can also provide a longer lifespan as no stepper motor is included. Finally, the proposed design demonstrates high tolerance to "unintentional defocus" effects and noise effects.
机译:测辐射计是用于测量各种人穴和肌肉群的角度范围的装置,例如肘部,膝盖或腰部。然而,大多数机械测量仪重量,提供不准确的测量,并受灰尘或污渍的影响。基于电子和光纤的测功仪表现出比其机械等同物更好的能力;但是,由于其成本较高和复杂的设置要求,它们的使用不可行。先前在一些研究中提出并讨论了光学编码器图案。这种光学基础编码器图案实现了与具有许多缺点的传统灰度编码器模式相同的角度分辨率,例如由于编码方法而产生的高差错率和低容差。本文介绍了一种可靠且非侵入式相移码绝对旋转编码器(PSC-IS)的设计,该旋转编码器(PSC为)是基于光学传感器,提供低成本,高精度的绝对旋转编码器系统。廉价的光学鼠标传感器用于捕获代码图像和相移码将时域数据转换为频域,该域用于解码相应的绝对角度。在本研究中提出的PSC表明,由于灰尘和其他环境颗粒的干扰减少了常规设计,并且对校准误差的敏感性较低的灵敏度来说,对传统设计进行了性能改善。此外,所提出的设计不仅比传统的测筒仪更紧凑和便携,也可以提供更长的寿命,因为没有包括步进电机。最后,所提出的设计表明了对“无意的散焦”的影响和噪音效应的高耐受性。

著录项

  • 来源
    《Journal of supercomputing》 |2021年第8期|8355-8373|共19页
  • 作者

    Lin Wen-Yen; Huang Ching-Wen;

  • 作者单位

    Natl Taichung Univ Sci & Technol Dept Informat Management 129 Sec 3 Sanmin Rd Taichung 404 Taiwan;

    Shin Kong Wu Ho Su Mem Hosp Dept Diagnost Radiol 95 Wenchang RdShih Lin Dist Taipei Taiwan|Natl Yang Ming Univ Inst Tradit Med 155 Sec 2 Linong St Taipei Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coding; Encoder; Goniometer; Measurement; Optical; Gray code; Pattern; Phase shift code;

    机译:编码;编码器;测量计;测量;光学;灰色代码;图案;相移代码;

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