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A Control Scheme for Automatic Level Crossings Under the ERTMS/ETCS Level 2/3 Operation

机译:ERTMS / ETCS 2/3级操作下的自动平交道口控制方案

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Level crossing (LC) safety is a crucial issue for railway operators and infrastructure managers. Accidents at LCs give rise to serious material and human damage, while seriously impacting the reputation of railway safety. In particular, some typical scenarios are behind the main part of train-car collisions, which occur at LCs. On the other hand, European Rail Traffic Management System (ERTMS) is the standard railway control-command and signaling system that is currently being implemented throughout Europe and elsewhere. The aim is to ensure railway interoperability while enhancing safety and competitiveness of the railway transportation. ERTMS specifications only provide a rough description when dealing with LC control. This paper elaborates on a functional control architecture for automatic LCs in the context of ERTMS operation Levels 2 and 3. Indeed, these operation levels ensure a continuous knowledge of train location thanks to the Global System for Mobile Communications—Railways link between the trains and the Radio Block Center. Hence, the established LC control scheme aims to ensure an optimal LC command based on the information regarding the train location and, thereby, prevent some potential risky scenarios and improve the global safety at LCs. To achieve this, a generic methodology is employed. First, a formal behavioral model is developed using the time Petri net (TPN) notation. Then, the problem is formalized on the basis of the established TPN, in such a way as to carry out a sound and trustworthy analysis. The various steps of the developed approach are detailed and illustrated in the course of this paper. To the best of our knowledge, this is the first work that seeks to elaborate a control strategy of automatic LC in the ERTMS operation context.
机译:平交道口(LC)安全是铁路运营商和基础设施经理的关键问题。信用证的事故会造成严重的物质和人身伤害,同时严重影响铁路安全的声誉。特别是,在LC发生的火车车厢碰撞的主要部分背后,存在一些典型的场景。另一方面,欧洲铁路交通管理系统(ERTMS)是标准的铁路控制命令和信号系统,目前正在整个欧洲和其他地方实施。目的是确保铁路互通性,同时提高铁路运输的安全性和竞争力。 ERTMS规范仅在处理LC控制时提供一个粗略的描述。本文详细介绍了ERTMS 2级和3级操作环境下自动LC的功能控制体系结构。的确,借助全球移动通信系统,这些操作级别可确保对列车位置的连续了解—列车与列车之间的铁路连接无线电块中心。因此,已建立的LC控制方案旨在基于有关火车位置的信息来确保最佳LC命令,从而防止出现某些潜在的风险情况并提高LC的全局安全性。为了实现这一点,采用了通用方法。首先,使用时间Petri网(TPN)表示法开发正式的行为模型。然后,在建立的TPN的基础上对问题进行形式化,以进行合理和可信赖的分析。本文的过程中详细说明了开发方法的各个步骤。据我们所知,这是第一份详细阐述ERTMS操作环境中自动LC控制策略的工作。

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