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Evaluating safety at railway level crossings with microsimulation modeling

机译:用微观仿真模型评估铁路平交道口的安全性

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摘要

Safety at railway level crossings (RLXs) is a worldwide issue that increasingly attracts the attention of relevant transport authorities, the rail industry, and the general public. The differences in the operation characteristics of varying types of warning devices, together with differences in crossing geometry, traffic, or train characteristics, leads to different driver behaviors at crossings. The aim of this study was to use traffic microsimulation modeling based on field video recording data to compare the safety performance of varying conventional RLX warning systems. The widely used microsimulation model VISSIM was modified to produce safety-related performance measures, namely, collision likelihood, delay, and queue length. The results showed that RLXs with an active warning system were safer than those with a passive sign by at least 17%. Integration of surrogate measures in conjunction with traffic simulation models determined which safety approach was more efficient for specified traffic and train volumes.
机译:铁路平交道口(RLX)的安全性是一个世界性的问题,越来越引起相关运输当局,铁路行业和公众的关注。各种警告装置的操作特性的差异,以及交叉路口的几何形状,交通或火车特性的差异,都会导致驾驶员在交叉路口的行为有所不同。这项研究的目的是使用基于现场视频记录数据的交通流微观仿真模型来比较各种常规RLX警告系统的安全性能。修改了广泛使用的微仿真模型VISSIM,以产生与安全相关的性能度量,即碰撞可能性,延迟和队列长度。结果表明,带有主动警告系统的RLX比带有被动信号的RLX安全至少17%。替代措施与交通模拟模型的集成确定了哪种安全方法对于指定的交通和火车数量更有效。

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