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Optimization and Simulation Research on the High-Speed Rail Train Tracking Interval

机译:高速轨道列车跟踪间隔优化与仿真研究

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The tracking interval between HSR trains is the key factors affecting the capacity utilization of HSR. The paper proposes the calculation method of the tracking interval and analyzes some factors influencing the tracking interval. Based on this, some effective ways to reduce the tracking interval are proposed, including train speed control, CTC system optimization, train platform scheme optimization, and line design transformation. Then a train tracking operation simulation model is established by means of the Anylogic software, in order to minimize the arrival tracking interval of trains under the condition of sectional route release. Besides, the simulation process is designed to get the minimum train arrival interval time under different arrival-departure track application plans. Thus the influence of arrival-departure track application plans on the minimum arrival tracking interval can be got. Finally Shanghai Hongqiao Station is taken as an example to demonstrate the efficiency of the proposed simulation train operation model. The simulation results show that the minimum train arrival interval varies with the arrival-departure track application plan and the best arrival-departure track application plan for trains at Hongqiao Station is get, and in this condition the train arrival interval can reduced by 30 seconds.
机译:HSR列车之间的跟踪间隔是影响HSR容量利用率的关键因素。本文提出了跟踪间隔的计算方法,分析了影响跟踪间隔的一些因素。基于此,提出了一些减少跟踪间隔的有效方法,包括火车速度控制,CTC系统优化,火车平台方案优化和线路设计变换。然后,通过AnyLogic软件建立火车跟踪操作仿真模型,以便在截面释放条件下最小化列车的到达跟踪间隔。此外,仿真过程旨在获得不同到达 - 出发轨道应用计划下的最小列车到达间隔时间。因此,可以获得到达 - 出发轨迹申请计划对最低到达跟踪间隔的影响。最后,上海虹桥站是一个例子,以证明所提出的仿真列车运行模型的效率。仿真结果表明,最低火车到达间隔随着到达 - 出发轨道应用计划而异,虹桥站列车的最佳抵达 - 出发轨道应用计划得到,并且在这种情况下,火车到达间隔可以减少30秒。

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