Runtime Verification of Railway Interlocking Software with Parametric Timed Automata

Ming Chai, Haifeng Wang, Jian Zhang, T. Tang
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Abstract

In railways, computer-based interlocking (CBI) systems are safety critical systems, and should be proved that there is no defect leading to catastrophes during their whole life cycles. Runtime verification is able to provide on-going protection during the operational phase. Unfortunately, as being a variantrich system, it is hard to build monitors for CBI with standard runtime verification frameworks. To overcome this shortcoming, we propose parametric timed automata (PTA) to build feature models for the system. We prove that the language of PTA has more expressive power than timed automata. Based on PTA, we build monitors for a concrete CBI used in Beijing Metro Line 7. The experiment results show that complicated variant-rich CBI systems can be specified with a unique PTA feature model, and monitors can be quickly derived from the model by assign values to parameters. Therefore, this approach is feasible for monitoring CBI systems.
参数化时间自动机铁路联锁软件运行验证
在铁路中,基于计算机的联锁系统(CBI)是安全关键系统,应该证明在其整个生命周期中不存在导致灾难的缺陷。运行时验证能够在操作阶段提供持续的保护。不幸的是,作为一个变量丰富的系统,很难用标准的运行时验证框架为CBI构建监视器。为了克服这一缺点,我们提出了参数时间自动机(PTA)来建立系统的特征模型。证明了PTA语言比时间自动机具有更强的表达能力。在此基础上,对北京地铁7号线混凝土CBI进行了监控。实验结果表明,可以用一种独特的PTA特征模型来描述复杂的富含变量的CBI系统,并且可以通过对参数赋值来快速地从该模型中获得监视器。因此,该方法对CBI系统的监测是可行的。
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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