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The role of formal methods in developing a distribuited railwai interlocking system

机译:形式方法在开发分布式铁路联锁系统中的作用

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摘要

The development of computer controlled Railway Interlocking Systems (RIS) has seen an increasing interest in the use of Formal Methods, due to their ability to precisely specify the logical rules that guarantee the safe establishment of routes for trains through a railway yard. Recently, a trend has emerged about the use of statecharts as a standard formalism to produce precise specifications of RIS. This paper describes an experience in modelling a railway interlocking system using statecharts. Our study has addressed the problem from a u27geographicu27, distributed, point of view: that is, our model is composed by models of single physical entities (points, signals, etc..) that collectively implement the interlocking rules, without any centralized database of rules, which is on the other hand a typical way of implementing such a system (what we call u27functionalu27 approach). We show how a distributed model of this kind may be used to develop a distributed implementation, that employs physically distributed controllers communicating through a u27safeu27 field bus. Ensuring safety of this kind of RIS is entirely based on formal verification.
机译:计算机控制的铁路联锁系统(RIS)的发展对形式化方法的使用引起了越来越多的兴趣,这是因为它们能够精确指定逻辑规则,以确保通过铁路场站的火车的安全路线。最近,出现了关于使用状态图作为标准形式主义来生成RIS的精确规范的趋势。本文介绍了使用状态图建模铁路联锁系统的经验。我们的研究从分布式的角度解决了这个问题:也就是说,我们的模型是由单个物理实体(点,信号等)的模型组成,这些模型共同实现了互锁规则,没有任何关联集中式规则数据库,这是实现这种系统的典型方式(我们称之为 u27functional u27方法)。我们展示了如何使用这种分布式模型来开发分布式实现,该实现采用通过 u27safe u27现场总线进行通信的物理分布式控制器。确保此类RIS的安全性完全基于形式验证。

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