轨道诊断专用导航系统

A. Boronahin, D. Larionov, L. Podgornaya, R. V. Shalymov, Y. Filatov, E. D. Bokhman
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引用次数: 5

摘要

铁路轨道的所有参数作为轨道测量车所覆盖距离的函数来计算。因此对该路径的测量精度要求非常高。轨道几何测量要求对暴露的轨道缺陷进行相当精确的定位。里程表是测量汽车行驶里程的主要工具。使用里程表作为唯一的测量工具并不能提供精确的缺陷定位,因为它的误差取决于车速、车轮打滑和天气条件,每1公里可能高达5米。将里程计与惯性导航系统、GPS和沿程专用导航标记相结合,是提高行驶距离测量精度的最完整、最有效的方法。给出了轨道交通综合定位导航系统的开发结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specialized navigation system for rail track diagnostics
All parameters of the railway track are calculated as a function of the distance covered by the track measurement car. Hence the requirements to this path measurement accuracy are very high. Track geometry measurement requires rather accurate positioning of the revealed track defects. Odometer is the main tool for measuring the path traveled by the car. Using odometer as a sole measurement instrument does not provide accurate localization of the revealed defects due to its errors, which depend on car speed, wheel slipping, and weather conditions and can be as high as 5 m per 1 km. The most complete and efficient approach to improving the accuracy of measurement of the traveled distance is integration of odometer with inertial navigation system, GPS and special navigation markers along the distance. Results of IONS (integrated orientation and navigation system) development for rail transportation are given.
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