Research on high precision displacement sensor based on optical arm amplification

Bai Zhang, Jiakun Zhang, Xueliang Kang, Ren Zheng
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Abstract

With the continuous development of optoelectronic information technology, modern manufacturing industry has higher requirements on the response speed, precision and resolution of sensors. A new high-precision continuous displacement sensor is proposed by combining the amplification principle of optical arm with the traditional position sensitive detector (PSD) in this paper. By using the principle of optical triangle amplification, the tiny displacement is transformed to the long side of the triangle, and the reflected laser is measured by the position sensitive detector to obtain the laser displacement of the long side. The structure of triangular wave optical reflector combined with dislocation multi-probe is adopted to realize alternating displacement measurement and extend the measuring range of the sensor. The experimental results show that the measurement principle proposed in this paper is correct, and the low-cost precision measurement of 1 µ m is preliminarily realized.
基于光臂放大的高精度位移传感器研究
随着光电信息技术的不断发展,现代制造业对传感器的响应速度、精度和分辨率提出了更高的要求。本文将光臂放大原理与传统位置敏感探测器(PSD)相结合,提出了一种高精度连续位移传感器。利用光学三角形放大原理,将微小的位移变换到三角形的长边,用位置敏感探测器测量反射的激光,得到长边的激光位移。采用三角波光反射镜与位错多探头相结合的结构,实现了位移交替测量,扩大了传感器的测量范围。实验结果表明,本文提出的测量原理是正确的,初步实现了1µm的低成本精密测量。
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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