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Reordering and Local Rerouting Strategies to Manage Train Traffic in Real Time

机译:实时管理火车交通的重排序和本地重路由策略

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Traffic controllers regulate railway traffic by sequencing train movements and setting routes with the aim of ensuring smooth train behaviour and limiting, as much as possible, train delays. In this paper, we describe the implementation of a real-time traffic management system, called ROMA (Railway traffic Optimization by Means of Alternative graphs), to support controllers in the everyday task of managing disturbances. We make use of a branch-and-bound algorithm for sequencing train movements, while a local search algorithm is developed for rerouting optimization purposes. The compound problem of routing and sequencing trains is approached iteratively, computing an optimal train sequencing for given train routes and then improving this solution by locally rerouting some trains. An extensive computational study is carried out, based on a dispatching area of the Dutch railway network. We study practical size instances, and include in the model important operational constraints, including rolling stock and passenger connections. Different types of disturbances are analysed, including train delays and blocked tracks. Comparison with common dispatching practice shows the high potential of the system as an effective support tool to improve punctuality.
机译:交通管制员通过对火车运动进行排序和设置路线来调节铁路交通,以确保火车行为平稳并尽可能限制火车延误。在本文中,我们描述了一种实时交通管理系统的实现,该系统称为ROMA(借助备选图的铁路交通优化),以支持控制器执行日常的干扰管理任务。我们使用分支定界算法对火车运动进行排序,同时开发了局部搜索算法以实现路线优化。迭代地解决了火车路线和排序的复合问题,计算给定火车路线的最佳火车排序,然后通过局部重新安排一些火车来改进此解决方案。基于荷兰铁路网的调度区域,进行了广泛的计算研究。我们研究实际规模的实例,并在模型中包括重要的运营约束条件,包括机车车辆和乘客连接。分析了不同类型的干扰,包括火车延误和轨道阻塞。与常规调度实践的比较表明,该系统具有很大的潜力,可以作为提高守时性的有效支持工具。

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