Eurobalise子系统中的时间同步

T. Kurz, R. Hornstein, H. Schweinzer, M. Balik, M. Mayer
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引用次数: 6

摘要

ETCS标准由欧盟发布,旨在实现欧洲铁路信号系统的互操作性。该标准使用所谓的Eurobalises将本地存储的信息发送给经过的列车。Eurobalises是一种安装在轨道上的设备,采用应答器技术。为了支持欧洲列车控制系统(ETCS)的标准,在列车上开发了一个子系统,称为balise传输模块(BTM)。BTM的职责是在列车通过时为Eurobalise提供远程动力,并接收Eurobalise发送的信息。这些数据必须被解调并传递给欧洲关键计算机(EVC),它是机车安全运行的控制单元。为了能够独立于接收到的电报定位Eurobalise, BTM必须额外创建一个Balise Detect信号,并根据ETCS标准的要求发送到EVC。如果接收到的场强超过给定的参考电平,就会产生该信号。ETCS内的所有组件都在不同的时间域中运行。为了能够计算正确的时序和里程数据,不同的时间域必须同步。这甚至影响到系统内的安全关键操作。ETCS要求整个系统满足SIL4标准。考虑到模块化,我们决定BTM也必须自己满足SIL4标准。关键是将安全需求与时间同步结合起来。影响BTM和EVC之间的通信。本文重点研究了BTM组件内部的同步机制以及BTM与EVC之间的同步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time Synchronization in the Eurobalise Subsystem
The ETCS standard was released by the European Union to reach interoperability in European railway signaling systems. This standard uses so called Eurobalises to send locally stored information to the passing train. Eurobalises are track mounted devices that operate on transponder technology. In order to support the standard for the European train control system (ETCS), a subsystem on the train called balise transmission module (BTM) was developed. The duty of the BTM is to tele-power an Eurobalise as the train passes and to receive the information sent by the Eurobalise. This data has to be demodulated and passed to the European vital computer (EVC), which is the control unit of the locomotive ensuring safe operation. To be able to locate a Eurobalise independent of received telegrams, a Balise Detect signal has to be additionally created by the BTM and sent to the EVC as demanded by ETCS standard. This signal is generated if the received field strength exceeds a given reference level. All components within the ETCS are operating in different time domains. In order to be able to calculate correct timing and odometric data, different time domains have to be synchronized. This has even effect on the safety critical operations within the system. ETCS requires the whole system fulfilling the SIL4 criteria. Considering modularity, it was decided that the BTM has to fulfill SIL4 criteria on its own, too. The crucial aspect is combining safety demands and time synchronization. It affects the communication between the BTM and the EVC. This paper focuses on the synchronization mechanisms within the components of the BTM and the synchronization between BTM and EVC.
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