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TRAIN RESCHEDULING GENERATION CONSIDERING ROLLING STOCK TYPES AND CLOSED-OFF AREAS

机译:考虑滚动股票类型和封闭区域的火车重新安排一代

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During railway operations, trains cannot operate on a scheduled timetable when a traffic accident happens. In such a case, exact re-operation time must be predicted and a rescheduling timetable after re-operation has to be generated quickly. Rescheduling timetables have been generated by manual operators. However, recently high-performance computers have also generated rescheduling timetables automatically. When a traffic accident happens, there are two main rescheduling plans considering traffic features on the tracks and infrastructure (for example, possible locations for a turning operation). In one plan, all tracks are closed and all trains re-started at the same time. In the second plan, the closed-off area is limited to only one part, and in other areas trains can run turning back operations. This rescheduling applies to where many trains run turning operations, and this type of rescheduling has the merit of continued traffic. Against this background, we are studying the automatic generation of rescheduling timetables. In Japanese urban areas, JR and some private company trains (rolling stocks) run through each other for passenger convenience, but the rolling stocks have limited running areas. For example, an area is operated by directory current rolling stock, but another area is powered by alternative current or diesel rolling stock operation. In this paper, we propose an improved rescheduling generation method that includes the closed-off area while also considering the rolling stock types. The generated rescheduling timetable includes turning operations in certain areas. With this method, a pausing time is set for each rolling stock, and other trains' paths may not cross the accident location. Of course, if the same pausing time is set for all trains, a rescheduling plan will be generated. Generated rescheduling plans are evaluated for passenger convenience; average headway time at each station for other directions and standard deviation time are evaluated. Shorter average headway time leads to larger transportation numbers, and smaller standard deviation means a more even passenger distribution for all trains. This method is applied to two scheduled timetables on a modelled double track line. Some rescheduling results are compared with different parameters. Generated rescheduled timetables include turning back operation.
机译:在铁路运营,列车不能在预定的时间表时,发生交通事故工作。在这种情况下,精确的重新操作时间必须被预测和重新操作后的重新安排时间表必须被快速生成。重新安排时间表已经通过手动控制器生成的。然而,近来高性能计算机也自动生成重新安排时间表。当交通事故发生时,有考虑在轨道和基础设施业务功能(例如,用于转动操作可能的位置)两个主要的重新安排计划。在一个计划中,所有曲目都关闭,并在同一时间所有列车重新启动。在第二个方案中,封闭的区域仅限于一部分,而在其他地区的列车可以运行义无反顾操作。这重新安排适用于有许多列车运行车削操作,而这种类型的补赛继续流量的优点。在此背景下,我们正在研究的自动生成重新安排时间表。在日本的城市地区,JR和一些私营公司的火车(机车车辆)为方便旅客通过彼此碰撞,但机车车辆有限运行区域。例如,一个区域是由目录当前的轧件操作,但另一个区域是由交流电流或柴油机车操作供电。在本文中,我们提出了包括封闭区内同时还要考虑车辆类型的改进补赛生成方法。生成的重新安排时间表包括在某些领域转向操作。通过这种方法,一个暂停时间设置为每个滚动股票,以及其他列车路径可能不能跨越事故地点。当然,如果同一暂时停止时刻被设置为所有列车上,重新安排计划将产生。产生重新安排计划,方便乘客进行评估;在每个站对于其他方向和标准偏差时间平均车头时距进行评估。更短的平均车头时距导致更大的运输数量和标准差较小手段所有列车更均匀客流集散。这种方法适用于两张预定时间表上模仿双轨线。一些补赛结果与不同的参数进行比较。产生的重组时间表包括义无反顾操作。

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