Component Based Architecture for the Control of Crossing Regions in Railway Networks

F. Ahmad, A. Sadiq, A. Enríquez, A. Muhammad, M. Anwar, Usama Ujaz Bajwa, M. Naseer, S. Khan
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引用次数: 2

Abstract

The research work in this paper discusses an improved Petri net model of railway crossing regions which are important and critical components of a railway networks. A control algorithm has been developed showing the interaction of the controller to other component of the system. A formal approach viz. Petri net (PN) is applied to model the safety requirement of trains along the crossing regions in railway networks. For the modeling, the component based modeling and the state-oriented modeling approaches have been integrated. First the track components and the control component are identified. The interaction of identified components, satisfying the safety requirements, is also defined in the high level architecture. Finally, state-oriented modeling approach has been adopted to design the detailed model of crossing region. Further, this paper uses the coverability tree to verify the specifications of crossing regions. By taking the crossing point as center, a circular region is introduced for safety purpose. Further, safety properties have been defined in term of place-invariants which have been verified by the state-space analysis.
基于组件的铁路网络跨区控制体系结构
本文的研究工作是讨论铁路道口区域的改进Petri网模型,道口区域是铁路网络的重要组成部分。开发了一种控制算法,显示了控制器与系统其他组件的交互作用。采用Petri网(PN)的形式化方法来模拟铁路网络中列车沿交叉区域的安全需求。在建模方面,集成了基于组件的建模方法和面向状态的建模方法。首先确定轨道部件和控制部件。满足安全需求的已识别组件的交互也在高层体系结构中定义。最后,采用面向状态的建模方法设计了交叉区域的详细模型。此外,本文还利用可覆盖性树来验证交叉区域的规格。以交叉口为中心,为安全起见,引入了一个圆形区域。进一步,用位置不变量定义了安全特性,并通过状态空间分析进行了验证。
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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