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Simulation-Based Dynamic Passenger Flow Assignment Modelling for a Schedule-Based Transit Network

机译:基于时间表的运输网络的仿真动态乘客流量分配建模

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摘要

The online operation management and the offline policy evaluation in complex transit networks require an effective dynamic traffic assignment (DTA) method that can capture the temporal-spatial nature of traffic flows. The objective of this work is to propose a simulation-based dynamic passenger assignment framework and models for such applications in the context of schedule-based rail transit systems. In the simulation framework, travellers are regarded as individual agents who are able to obtain complete information on the current traffic conditions. A combined route selection model integrated with pretrip route selection and entrip route switch is established for achieving the dynamic network flow equilibrium status. The train agent is operated strictly with the timetable and its capacity limitation is considered. A continuous time-driven simulator based on the proposed framework and models is developed, whose performance is illustrated through a large-scale network of Beijing subway. The results indicate that more than 0.8 million individual passengers and thousands of trains can be simulated simultaneously at a speed ten times faster than real time. This study provides an efficient approach to analyze the dynamic demand-supply relationship for large schedule-based transit networks.
机译:在线操作管理和复杂的传输网络中的离线策略评估需要有效的动态流量分配(DTA)方法,可以捕获交通流的时间空间性质。这项工作的目的是提出基于模拟的动态乘客分配框架和模型,用于基于时间表的轨道交通系统的上下文中的这种应用。在模拟框架中,旅行者被视为能够获取关于当前流量条件的完整信息的个人代理。建立了集成的组合路由选择模型和预折线路由选择和夹夹路由开关,用于实现动态网络流量平衡状态。火车代理商严格按照时间表运营,其容量限制被考虑。开发了一种基于所提出的框架和模型的连续时间驱动模拟器,其性能通过北京地铁的大规模网络来说明。结果表明,超过80万个单独的乘客和数千列火车可以同时模拟10倍,而不是实时的速度。本研究提供了一种有效的方法来分析基于大型计划的过境网络的动态需求关系。

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