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A new analytical approach to evaluate the critical-event probability due to wireless communication errors in Train Control Systems

机译:一种新的分析方法,用于评估列车控制系统中由于无线通信错误导致的临界事件概率

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摘要

Wireless communication links tend to be employed more and more in safety-critical railway applications. Their safe use in an advanced train control system (TCS) is an issue that is addressed in this paper by characterizing the TCS service interruption due to communication errors. More precisely, occurrence probabilities of single errors are first discussed. Then, we obtain probabilistic analytical expressions of several temporal conditions that lead to a TCS service interruption, here a train emergency braking (the critical event). The accuracy of this analytical approach is proved when the results are compared with those given by a simulation approach with a Petri net model. Additionally, as the use case related to the 'trains' separation' is considered in this paper, an analytical evaluation process is proposed to discuss the tolerated time margins that can be fixed to limit the critical-event occurrence probability due to the wireless communication errors.
机译:无线通信链路在安全关键铁路应用中越来越多地被采用。在安全的高级列车控制系统(TCS)中使用它们是一个问题,本文通过对由于通信错误而导致的TCS服务中断进行特征分析来解决。更准确地说,首先讨论单个错误的发生概率。然后,我们获得了导致TCS服务中断的几种时间条件的概率分析表达式,这里是火车紧急制动(关键事件)。当将结果与带有Petri网模型的模拟方法给出的结果进行比较时,证明了这种分析方法的准确性。此外,由于本文考虑了与“火车”分离有关的用例,因此提出了一种分析评估过程来讨论可容忍的时间裕度,该容限可以固定以限制由于无线通信错误而导致的关键事件发生概率。

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