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A train positioning algorithm based on inflexion analysis by using sets of distance measurement data collected from on-board laser ranging equipments

机译:利用从车载激光测距设备收集的几组测距数据,基于拐点分析的火车定位算法

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摘要

Train positioning system is the most important part in the operation and control system (OCS) in rail transit system of all kinds, for it can help the OCS system to get the real-time train positioning information and to realize fail-safe principle if any incident which may lead to hazard happens. Nowadays, different rail transit system have different ways in realizing train positioning, for the environment of each rail transit lines are different, and there is not a certain method which could be applied to all. Consider that each rail transit line has its own civil construction characteristics, and there is a distance measurement method with the accuracy up to millimeter level based on laser ranging, train positioning can be realized by setting up several sets of laser ranging equipments on-board, collecting ranging data between the train and different civil construction surfaces along the line, and counting the real-time train position out employing these sets of data collected and certain data matching algorithms. In this paper, a train positioning algorithm has been proposed based on inflexion analysis, such algorithm utilizes sets of distance measurement data collected from on-board laser ranging equipments. By setting up an experiment system for train positioning with the aid of laser ranging equipment, the effectiveness of proposed algorithm has been verified.
机译:火车定位系统是各种轨道交通系统运行与控制系统(OCS)中最重要的部分,因为它可以帮助OCS系统获取实时的火车定位信息并实现故障保护原理(如果有的话)可能导致危险的事故发生。如今,不同的轨道交通系统在实现列车定位中有不同的方式,因为每条轨道交通线的环境都不同,没有一种方法可以适用于所有人。考虑到每条轨道交通线都有其自身的民用建筑特性,并且存在一种基于激光测距的精度高达毫米级的测距方法,可以通过在车上设置多套激光测距设备来实现列车定位,收集沿线的火车与不同民用建筑表面之间的测距数据,并使用这些收集的数据集和某些数据匹配算法对实时火车位置进行计数。本文提出了一种基于挠度分析的列车定位算法,该算法利用了从车载激光测距设备中采集到的测距数据集。通过借助激光测距设备建立火车定位实验系统,验证了所提算法的有效性。

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