Failure management strategies for IoT-based railways systems

F. Righetti, C. Vallati, G. Anastasi, Giulio Masetti, F. Giandomenico
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引用次数: 3

Abstract

Railways monitoring and control are currently performed by different heterogeneous vertical systems working in isolation without or with limited cooperation among them. Such configuration, widely adopted in practical deployments today, is in contrast with the integrated vision of systems that are at the foundation of the smart-city concept. In order to overcome the current fractured ecosystem that monitors and controls railways functionalities, the adoption of a novel integrated approach is mandatory to create an all-in-one railway system. To this aim, new IoT-based communication technologies, like wireless or Power Line Communication technologies, are considered the main enablers to integrate in a very rapid and easy manner existing vertical systems. In this work, we analyse the architecture of future railways systems based on a mix of wireless and Power Line Communication technologies. In our analysis, we aim at studying possible failure management strategies on rail-road switches to improve the level of reliability, crucial requirement for systems that demand maximum resiliency as they manage a critical function of the infrastructure. In particular, we propose a set of solutions aimed at detecting and handling network and sensor failures to ensure continuity in the execution of the basic control functions. The proposed approach is evaluated by means of simulations and demonstrated to be effective in ensuring a good level of performance even when failures occur.
基于物联网的铁路系统故障管理策略
目前,铁路监测和控制是由不同的异构垂直系统进行的,它们之间没有或只有有限的合作。这种配置在今天的实际部署中被广泛采用,与作为智慧城市概念基础的系统集成愿景形成鲜明对比。为了克服目前监测和控制铁路功能的支离破碎的生态系统,必须采用一种新的综合方法来创建一个一体化的铁路系统。为此,新的基于物联网的通信技术,如无线或电力线通信技术,被认为是以非常快速和简单的方式集成现有垂直系统的主要推动因素。在这项工作中,我们分析了基于无线和电力线通信技术混合的未来铁路系统的架构。在我们的分析中,我们的目标是研究铁路-公路交换机可能的故障管理策略,以提高可靠性水平,这是系统在管理基础设施的关键功能时需要最大弹性的关键要求。特别是,我们提出了一套旨在检测和处理网络和传感器故障的解决方案,以确保基本控制功能执行的连续性。通过仿真对所提出的方法进行了评估,并证明即使在发生故障时也能有效地确保良好的性能水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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