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TOWARD A COMMON PLATFORM FOR SIMULATION-BASED EVALUATION OF BOTH FUNCTIONAL AND TELECOMMUNICATION SUB-SYSTEMS OF THE ERTMS

机译:面向通用平台的ERTMS功能和电信子系统的仿真评估

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The deployment of the European Rail Traffic Management System (ERTMS) in Europe will be mandatory on the major corridors, but this process will be long and expensive. Industry needs faster roll-out and a reduction in cost in order to obtain the certification and authorization to put equipment into service. New lab-testing tools for European Train Control System (ETCS) validation based on automatic testing could accelerate the process. In this work, we propose a co-simulation platform relaying on two existing tools: the ERTMS simulator that implements only the functional sub-system (ETCS) of ERTMS; and the OPNET simulator that allows modeling the whole telecommunication subsystem (GSM-R) from the Physical layer to higher layers, including the Euroradio interface. We describe a co-simulation protocol that determines how the results obtained from each simulator are reused as input in the other in order to take into account the impact of the functioning of one subsystem on the other. In this way, the problems related to radio propagation impairments, network load and electromagnetic interferences can be taken into account in ERTMS evaluation. Furthermore, some actors of the railway industry think about moving towards emerging technologies like LTE (4G Long Term Evolution). This platform will also allow evaluation of prospective technologies in the framework of ERTMS scenarios before costly real-world implementation.
机译:在主要走廊上必须在欧洲部署欧洲铁路交通管理系统(ERTMS),但是此过程将是漫长且昂贵的。为了获得将设备投入使用的认证和授权,行业需要更快的推出和降低成本。用于基于自动测试的欧洲列车控制系统(ETCS)验证的新实验室测试工具可以加快这一过程。在这项工作中,我们提出一个基于两个现有工具的协同仿真平台:仅实现ERTMS的功能子系统(ERTCS)的ERTMS仿真器; OPNET仿真器可以对从物理层到更高层(包括Euroradio接口)的整个电信子系统(GSM-R)进行建模。我们描述了一种共同仿真协议,该协议确定从每个仿真器获得的结果如何在另一个仿真器中用作输入,以便考虑一个子系统的功能对另一个子系统的影响。这样,可以在ERTMS评估中考虑与无线电传播损害,网络负载和电磁干扰有关的问题。此外,铁路行业的一些参与者正在考虑向诸如LTE(4G长期演进)之类的新兴技术迈进。该平台还将允许在昂贵的现实世界中实施之前,在ERTMS方案的框架内评估潜在技术。

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