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Evaluating Disturbance Robustness of Railway Schedules

机译:评估铁路时刻表的抗干扰能力

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Railway traffic is operated according to a detailed schedule, specifying for each train its path through the network plus arrival and departure times at its scheduled stops. During daily operations, disturbances perturb the plan and dispatchers take action in order to keep operations feasible and to limit delay propagation. This article presents a thorough assessment of the possible application of an optimization-based framework for the evaluation of different timetables and proactive railway traffic management over a large network, considering stochastic disturbances. Two types of timetables are evaluated in detail: "regular" and "shuttle" timetables. The former is the regular plan of operations for normal traffic conditions, while the latter plan is designed to be robust against widespread disturbances, such as adverse weather, track blockage, and other operational failures. A test case is presented on a large Dutch railway network with heavy traffic, for which we compute by microsimulation detailed train movements at the level of block signals and at a precision of seconds. When comparing the timetables, a trade-off is found between the minimization of train delays, due to potential conflicts and due to delayed rolling stock and crew duties, and the minimization of passenger travel time between given origins and destinations.
机译:铁路交通按照详细的时间表进行运营,为每列火车指定其通过网络的路径,以及在预定站点的到达和出发时间。在日常操作中,干扰会扰乱计划,调度员会采取行动,以使操作可行并限制延迟传播。本文对考虑随机干扰的大型网络中不同时间表的评估和主动铁路交通管理的基于优化的框架的可能应用进行了全面评估。详细评估了两种时间表:“常规”时间表和“往返”时间表。前者是正常交通状况下的常规行动计划,而后者则旨在抵抗广泛的干扰,例如恶劣的天气,路障和其他操作故障。在大型荷兰铁路网络上,出现了一个交通繁忙的测试案例,为此,我们通过微观模拟以块信号级别和几秒钟的精确度来计算详细的火车运动。在比较时间表时,要在最小化火车延误(由于潜在的冲突以及由于机车和机组人员的延误)与最小化给定起点与终点之间的旅客旅行时间之间进行权衡。

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