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Cell transmission model of dynamic assignment for urban rail transit networks

机译:城市轨道交通网络动态分配的信元传输模型

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摘要

For urban rail transit network, the space-time flow distribution can play an important role in evaluating and optimizing the space-time resource allocation. For obtaining the space-time flow distribution without the restriction of schedules, a dynamic assignment problem is proposed based on the concept of continuous transmission. To solve the dynamic assignment problem, the cell transmission model is built for urban rail transit networks. The priority principle, queuing process, capacity constraints and congestion effects are considered in the cell transmission mechanism. Then an efficient method is designed to solve the shortest path for an urban rail network, which decreases the computing cost for solving the cell transmission model. The instantaneous dynamic user optimal state can be reached with the method of successive average. Many evaluation indexes of passenger flow can be generated, to provide effective support for the optimization of train schedules and the capacity evaluation for urban rail transit network. Finally, the model and its potential application are demonstrated via two numerical experiments using a small-scale network and the Beijing Metro network.
机译:对于城市轨道交通网络,时空流量分布在评估和优化时空资源分配中可以发挥重要作用。为了获得不受时间表限制的时空流量分布,基于连续传输的概念提出了一种动态分配问题。为了解决动态分配问题,为城市轨道交通网络建立了小区传输模型。在小区传输机制中考虑了优先级原则,排队过程,容量限制和拥塞效应。然后设计了一种有效的方法来求解城市轨道交通网络的最短路径,从而降低了求解小区传输模型的计算成本。瞬时动态用户最优状态可以通过逐次平均的方法达到。可以产生许多客流评价指标,为火车时刻表的优化和城市轨道交通网络容量评估提供有效的支持。最后,通过两个小规模网络和北京地铁网络的数值实验,证明了该模型及其潜在应用。

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