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Asynchronous Resilient Wireless Sensor Network for Train Integrity Monitoring

机译:用于列车完整性监控的异步弹性无线传感器网络

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To increase railway use efficiency, the European Railway Traffic Management System (ERTMS) Level 3 requires all trains to constantly and reliably self-monitor and report their integrity and track position without infrastructure support. Timely train separation detection is challenging, especially for long freight trains without electrical power on cars. Data fusion of multiple monitoring techniques is currently investigated, including distributed integrity sensing of all train couplings. We propose a wireless sensor network (WSN) topology, communication protocol, application, and sensor nodes prototypes designed for low-power timely train integrity (TI) reporting in unreliable conditions, like intermittent node operation and network association (e.g., in low environmental energy harvesting conditions) and unreliable radio links. Each train coupling is redundantly monitored by four sensors, which can help to satisfy the train collision avoidance system (TCAS) and European Committee for Electrotechnical Standardization (CENELEC) software integrity level (SIL) 4 requirements and contribute to the reliability of the asynchronous network with low rejoin overhead. A control center on the locomotive controls the WSN and receives the reports, helping the integration in railway or Internet-of-Things (IoT) applications. Software simulations of the embedded application code virtually unchanged show that the energy-optimized configurations check a 50-car TI (about 1-km long) in 3.6-s average with 0.1-s standard deviation and that more than 95% of the reports are delivered successfully with up to one-third of communications or up to 15% of the nodes failed. We also report qualitative test results for a 20-node network in different experimental conditions.
机译:为了提高铁路利用效率,欧洲铁路交通管理系统(ERTMS)3级要求所有列车不断且可靠地自我监控,并在没有基础架构支持的情况下报告它们的完整性和轨道位置。及时火车分离检测是具有挑战性的,特别是对于长期的货运列车而没有电动车辆。目前研究了多种监控技术的数据融合,包括所有列车联轴器的分布式完整性感应。我们提出了一种无线传感器网络(WSN)拓扑,通信协议,应用程序和传感器节点原型,用于在不可靠的条件下报告的低功率及时列车完整性(TI),如间歇节点操作和网络关联(例如,在低环境能量中收获条件)和不可靠的无线电链路。每个列车耦合都通过四个传感器冗余监控,这可以帮助满足火车碰撞避免系统(TCAS)和欧洲电工标准化委员会(CENELEC)软件完整性水平(SIL)4要求,并有助于与异步网络的可靠性有助于低重新加入开销。机车上的一个控制中心控制WSN并收到报告,帮助在铁路或内容互联网上集成(IOT)应用程序。嵌入式应用程序代码的软件模拟几乎不变,表明能量优化的配置在3.6-S平均值中检查50辆车Ti(约1公里),其中标准偏差为0.1秒,超过95%的报告是已成功交付,最多三分之一的通信或高达15%的节点失败。我们还报告了不同实验条件下的20节网络的定性测试结果。

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