Accurate and high-performance 3D position measurement of fiducial marks by stereoscopic system for railway track inspection

A. A. Gorbachev, Mariya G. Serikova, E. N. Pantyushina, D. Volkova
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引用次数: 3

Abstract

Modern demands for railway track measurements require high accuracy (about 2-5 mm) of rails placement along the track to ensure smooth, safe and fast transportation. As a mean for railways geometry measurements we suggest a stereoscopic system which measures 3D position of fiducial marks arranged along the track by image processing algorithms. The system accuracy was verified during laboratory tests by comparison with precise laser tracker indications. The accuracy of ±1.5 mm within a measurement volume 150×400×5000 mm was achieved during the tests. This confirmed that the stereoscopic system demonstrates good measurement accuracy and can be potentially used as fully automated mean for railway track inspection.
铁路轨道检测用立体系统对基准点进行高精度、高性能三维位置测量
现代铁路轨道测量要求高精度(约2-5毫米)的轨道沿轨道放置,以确保顺利,安全和快速的运输。作为铁路几何测量的一种手段,我们提出了一种立体系统,通过图像处理算法测量沿轨道排列的基准标记的三维位置。在实验室测试中,通过与精确的激光跟踪器指示进行比较,验证了系统的精度。在测试过程中,测量体积150×400×5000 mm内的精度为±1.5 mm。这证实了立体系统具有良好的测量精度,可以作为铁路轨道检测的全自动手段。
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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