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Radio Communication for Communications-Based Train Control (CBTC): A Tutorial and Survey

机译:基于通信的列车控制的无线电通信(CBTC):指南和调查

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Over the last decade, railway industry has seen a huge transition from conventional railway signalling systems to modern, communication-based signalling systems. Communications-based train control (CBTC) is a modern communication-based system that uses radio communication to transfer timely and accurate train control information. CBTC is the choice of mass-transit railway operators today, with over a hundred systems currently installed worldwide. The safety-related, time-critical applications such as train control impose stringent reliability and availability requirements on the radio communication technology used. IEEE 802.11 Wi-Fi, despite being originally developed for stationary users within a limited area, has prevailed as the de-facto radio technology for CBTC. Unfortunately, very limited literature is publicly available on this topic due to the highly competitive nature of the railway industry. We believe that this paper fills the much-needed gap. It aims to present a comprehensive tutorial, as well as a survey of the state-of-the-art, of CBTC and the role of radio communication in it. The operation and fundamental components of a CBTC system are discussed. A summary of the evolution of the communication technologies used for modern railway signalling is presented. The benefits and drawbacks of using a radio communication technology, particularly Wi-Fi, and the challenges it introduces, are discussed. Best practices in the design of a CBTC radio network and the measures to optimize its availability are discussed, while using the currently in-progress Copenhagen S-train CBTC project as a reference. An overview of the CBTC standardization efforts, as well as the IEEE CBTC standard—frequently overlooked due to its limited scope—is included. This paper is concluded by providing a number of potential directions for future work.
机译:在过去的十年中,铁路行业经历了从常规铁路信号系统到现代基于通信的信号系统的巨大转变。基于通信的火车控制(CBTC)是基于现代通信的系统,该系统使用无线电通信来传递及时而准确的火车控制信息。如今,CBTC已成为轨道交通运营商的选择,目前在全球范围内安装了一百多个系统。与安全相关的,对时间要求严格的应用(例如列车控制)对所使用的无线电通信技术提出了严格的可靠性和可用性要求。尽管IEEE 802.11 Wi-Fi最初是为有限区域内的固定用户开发的,但它已成为CBTC的事实上的无线电技术。不幸的是,由于铁路行业的高度竞争性,关于这一主题的文献很少公开。我们认为本文填补了亟需的空白。它旨在提供全面的教程,以及CBTC的最新技术及其在无线通信中的作用的概述。讨论了CBTC系统的操作和基本组件。概述了现代铁路信号通信技术的发展。讨论了使用无线电通信技术(尤其是Wi-Fi)的利弊,以及由此带来的挑战。讨论了CBTC无线电网络设计的最佳实践以及优化其可用性的措施,同时以当前正在进行的哥本哈根S列车CBTC项目为参考。其中包括CBTC标准化工作的概述以及IEEE CBTC标准(由于范围有限而经常被忽略)。本文的结尾是为将来的工作提供了许多潜在的方向。

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