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A reliability-based traffic assignment model for multi-modal transport network under demand uncertainty

机译:需求不确定下基于可靠性的多式联运网络交通分配模型

摘要

In densely populated and congested urban areas, the travel times in congested multi-modal transport networks are generally varied and stochastic in practice. These stochastic travel times may be raised from day-to-day demand fluctuations and would affect travelers' route and mode choice behaviors according to their different expectations of on-time arrival. In view of these, this paper presents a reliability-based user equilibrium traffic assignment model for congested multi-modal transport networks under demand uncertainty. The stochastic bus frequency due to the unstable travel time of bus route is explicitly considered. By the proposed model, travelers' route and mode choice behaviors are intensively explored. In addition, a stochastic state-augmented multi-modal transport network is adopted in this paper to effectively model probable transfers and non-linear fare structures. A numerical example is given to illustrate the merits of the proposed model.
机译:在人口稠密和拥挤的城市地区,拥挤的多式联运网络中的旅行时间通常是变化的,并且在实践中是随机的。这些随机旅行时间可能会因日常需求波动而增加,并会根据旅客对准时到达的不同期望而影响旅客的路线和方式选择行为。有鉴于此,本文提出了在需求不确定性下拥堵多式联运网络基于可靠性的用户均衡交通分配模型。明确考虑了由于公交线路的不稳定行驶时间而导致的随机公交车频率。通过提出的模型,对旅行者的路线和模式选择行为进行了深入研究。此外,本文采用随机状态增强的多式联运网络来有效地建模可能的转移和非线性票价结构。数值例子说明了该模型的优点。

著录项

  • 作者

    Fu X; Lam WHK; Chen BY;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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