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Design and analysis of range finder for medium distance

机译:中距测距仪的设计与分析

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This paper introduces the research and design of laser triangulation measurement system based on linear array CCD, and the correctness of the theoretical analysis and the feasibility of the design will be verified by the experiments. The principle of optical system of direct-incident laser triangulation measurement is analyzed theoretically from laser triangulation measurement principle and practical measurement requirement. A measurement system, which consists of a semiconductor laser source, an imaging Plano-convex lens, and a high-speed linear CCD, is designed. In these experiments, the high-speed linear array CCD optoelectronic data are obtained by acquisition and transmission system of USB interface. Through the corresponding relation between displacement variation of measured object and the pixel position of laser spot imaging on linear CCD, the measurement system uses the different fitting equations to be calibrated. Comparing displacement variation of the calibration results calculating with the actual one, the results shows that the measurement precision of using the four fitting can reach 0.47mm, the range of measuring is 200mm. The results show that the measurement system is correct and valid for medium displacement measurement.
机译:本文介绍了基于线性阵列CCD的激光三角测量测量系统的研究和设计,并通过实验验证了理论分析的正确性和设计的可行性。从激光三角测量原理和实际测量要求理论上分析了直接入射激光三角测量测量光学系统的原理。设计了由半导体激光源,成像平面凸透镜和高速线性CCD组成的测量系统。在这些实验中,通过USB接口的采集和传输系统获得高速线性阵列CCD光电数据。通过测量对象的位移变化与线性CCD上的激光点成像的像素位置之间的相应关系,测量系统使用要校准的不同拟合方程。比较使用实际计算的校准结果的位移变化,结果表明,使用四配件的测量精度可以达到0.47mm,测量范围为200mm。结果表明,测量系统是正确的,适用于中等位移测量。

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