面向当前和未来移动技术的ERTMS建模与仿真

Christian Pinedo, M. Aguado, Igor Lopez, J. Astorga
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引用次数: 8

摘要

如今,列车控制实验室仿真工具在减少大量和昂贵的现场铁路测试活动方面发挥着至关重要的作用。在本文中,我们通过详细介绍我们在实验室演示的欧洲铁路列车管理系统的内部结构来展示我们在这一领域的贡献。这个演示器是建立在一个通用的仿真框架,河床Modeler,以前的Opnet Modeler。该框架对ERTMS子系统、基于运动授权消息交换的列车自动保护应用层和基于GSM-R通信技术的电信子系统进行了建模。我们提供建模策略的详细信息。我们还用真实的跟踪数据验证了我们的仿真框架。综上所述,在当前行业从GSM-R过时到基于ip的异构技术的迁移场景下,我们的仿真框架对铁路运营商来说是一种独特的工具。作为一个例子,我们使用候选替代技术LTE与当前遗留技术对特定铁路网的相关性能指标进行评估。据我们所知,没有类似的举措能够衡量电信子系统对铁路网络可用性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Simulation of ERTMS for Current and Future Mobile Technologies
Nowadays, train control in-lab simulation tools play a crucial role in reducing extensive and expensive on-site railway testing activities. In this paper, we present our contribution in this arena by detailing the internals of our European Railway Train Management System in-lab demonstrator. This demonstrator is built over a general-purpose simulation framework, Riverbed Modeler, previously Opnet Modeler. Our framework models both ERTMS subsystems, the Automatic Train Protection application layer based on movement authority message exchange and the telecommunication subsystem based on GSM-R communication technology. We provide detailed information on our modelling strategy. We also validate our simulation framework with real trace data. To conclude, under current industry migration scenario from GSM-R legacy obsolescence to IP-based heterogeneous technologies, our simulation framework represents a singular tool to railway operators. As an example, we present the assessment of related performance indicators for a specific railway network using a candidate replacement technology, LTE, versus current legacy technology. To the best of our knowledge, there is no similar initiative able to measure the impact of the telecommunication subsystem in the railway network availability.
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