基于激光传感器的铁路轨道三维位移测量系统

Jiaqian Ren, Jiye Huang
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引用次数: 2

摘要

本文介绍了一种铁路轨道三维位移激光测量系统的设计。该系统由一个三通道激光传感器和一个正四面体目标组成。利用三束激光,将传感器放置在远离轨道的固定位置,获得目标在轨道上的三维位移。通过对实测数据的处理,实时计算结构位移。本文提出了一种巧妙的转换公式,可以在没有视觉技术的情况下,通过跟踪目标的三组一维数据来测量三维位移。通过微调台试验,验证了激光系统在铁路轨道三维位移测量中的有效性。最大误差为1mm,几乎等于激光传感器的精度。为了进一步提高系统对暗环境的适应能力,还提出了一种人工标记目标的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Laser Sensor-Based 3-Dimensional Displacement Measuring System for Railway Track
This paper presents the design of a laser measurement system for measuring the 3-dimensional(3D) displacement of railway track. The system consists of a three-channel laser sensor and a regular tetrahedral target. With three lasers, the sensor placed at a stationary position away from the railway track gets the 3-dimensional displacement of a target on the railway track. The structural displacement is computed in real time through processing the measured data. A clever conversion formula developed in this paper enables measurement of 3D displacement by tracking three sets of one-dimensional data of a target without vision technology. The efficacy of the laser system in 3D displacement measurement of the railway track was demonstrated through a fine-tuning table test. The maximum error is 1mm, which nearly equals to the accuracy of the laser sensor. An artificial means of marking the target is also proposed to further improve the adaptability of the system to the dark environment.
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