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A passenger traffic assignment model with capacity constraints for transit networks

机译:具有交通网络容量约束的客运分配模型

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摘要

A model is provided to capture capacity phenomena in passenger traffic assignment to a transit network. These pertain to the interaction of passenger traffic and vehicle traffic: vehicle seat capacity drives the internal comfort, vehicle total capacity determines internal comfort and also platform waiting, passenger flows at vehicle egress and access interplay with dwell time, dwell time drives track occupancy and in turn the period frequency of any service that passes the station along the line of operations, and then service frequency influences service capacity and platform waiting. These phenomena are dealt with by line of operations on the basis of a set of local models yielding specific flows or costs. The topological order of the line is used to devise two line models of, respectively, flow loading and cost setting, each of which calls its local sub-models. The pair of line algorithms amounts to a complex cost-flow relationship at the level of the line. The line model is used as a sub-model in passenger assignment to network hyperpaths, where line pairs of access-egress stations constitute leg links. The properties of static traffic equilibrium for both vehicles and passengers are established.
机译:提供了一个模型来捕获客运分配给公交网络中的运力现象。这些关系到乘客交通和车辆交通的相互作用:车辆座椅容量决定内部舒适度,车辆总容量决定内部舒适度,也决定平台的等待,车辆出口处的乘客流量以及出入时间与停留时间的相互作用,停留时间决定轨道的占用和起伏。转动沿操作路线经过站点的任何服务的周期频率,然后服务频率会影响服务容量和平台等待。在一系列产生特定流量或成本的局部模型的基础上,通过运营线来处理这些现象。生产线的拓扑顺序用于分别设计两个流程模型,分别是流量负荷和成本设定,每个模型都称为其本地子模型。一对生产线算法在生产线水平上构成了复杂的成本流关系。线路模型用作对网络超路径的乘客分配的子模型,其中入口-出口车站的线路对构成支路。建立了车辆和乘客的静态交通平衡特性。

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