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Real-time asynchronous conflict solving algorithms for computer aided train dispatching assistance systems

机译:计算机辅助火车调度辅助系统的实时异步冲突解决算法

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The computer aided real time dispatching assistance of train runs is a hard and complex problem. Although several approaches for dispatching and train surveillance exists - often limited to very specific aspects and situations of computer aided train operation - an integrated and flexible system covering train location, delay detection, computer aided (automated) conflict resolution and dispatching decision propagation is not available. The project DisKon is a development project initiated and assigned by DEUTSCHE BAHN AG that targets such a system. The proof of concept for this integrated approach has been made in 2007, when the system was tested several weeks at the Integrated Railway Laboratory (IEL) of the University of Dresden. In 2007 and 2008 the evaluation continued under real time conditions within operation control centres. Besides different modules and components for functionalities like train position detection, train run forecast, track assimilation and prognosis of arrival and departure times one scientific core of the DisKON system is a microscopic conflict solving component on blocking time level, enriched by another macroscopic component evaluating links of connection trains. The solving algorithm extends the ASDIS/L-system developed at the RWTH Aachen. It follows an asynchronous approach, considering conflicts chronologically and depending on priority values of the involved trains. The base algorithm was elementarily revised and enhanced by conflict situation detection and a derived conflict solving strategy builder. The result set of the strategy builder controls the parameter and the behaviour of the base algorithm. In this paper a rough architecture of dispatching systems is introduced, system requirement, environmental condition and behaviour are identified and a differentiated system evaluation is presented.
机译:列车运行的计算机辅助实时调度辅助是一个艰巨而复杂的问题。尽管存在几种用于调度和监视火车的方法-通常限于非常特殊的方面和计算机辅助火车运行的情况-但尚不提供覆盖火车位置,延迟检测,计算机辅助(自动)冲突解决和调度决策传播的集成且灵活的系统。 DisKon项目是由DEUTSCHE BAHN AG发起并分配给该系统的开发项目。这种综合方法的概念证明是在2007年进行的,当时该系统在德累斯顿大学综合铁路实验室(IEL)进行了数周的测试。在2007年和2008年,评估继续在运营控制中心的实时条件下进行。除了功能不同的模块和组件(例如列车位置检测,列车运行预测,到达和出发时间的轨道同化和预后)外,DisKON系统的一个科学核心是在阻塞时间水平上解决微观冲突的组件,并通过另一个宏观的组件评估链接进行了充实连接列车。该求解算法扩展了亚琛工业大学开发的ASDIS / L系统。它采用异步方法,按时间顺序考虑冲突,并取决于相关列车的优先级值。冲突情况检测和派生的冲突解决策略构建器对基本算法进行了基本修订和增强。策略构建器的结果集控制基本算法的参数和行为。本文介绍了调度系统的粗略体系结构,确定了系统需求,环境条件和行为,并提出了差异化的系统评估。

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