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Stochastic dynamic traffic assignment for intermodal transportation networks with consistent information supply strategies.

机译:具有一致信息提供策略的联运交通网络的随机动态交通分配。

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摘要

Private car use continues to increase in most urban areas around the world, exacerbating various associated problems such as traffic congestion, environmental degradation and high fuel consumption. With the dispersion of land-use activity patterns in many urban areas, serious challenges face the design of public transportation systems to provide an effective substitute for the private car. A more plausible approach would be to design and promote an intelligent intermodal transportation system, which integrates the private car with existing or planned transit modes. Several Intelligent Transportation Systems (ITS) capabilities and user services, which fall in the areas typically referred to as Advanced Travelers Information Systems (ATIS), Advanced Traffic Management Systems (ATMS), and Advanced Public Transportation Systems (APTS), offer promising opportunities to manage traffic and improve operation in intermodal networks. Providing real-time information to users on network congestion, and availability and status of transit modes, could contribute to efficient integration among the existing modes, and hence to more efficient trips for travelers.; This research develops a stochastic dynamic trip assignment model for urban intermodal networks. The model overcomes limitations of static tools used in current practice. These limitations relate to the type of alternative measures that may be evaluated, and the policy questions that planning agencies are increasingly asked to address. The model captures the interaction between mode choice and dynamic assignment under different information provision strategies and network control schemes. A simulation-based solution algorithm is presented for the problem. The model incorporates a stochastic network loading model for intermodal networks and a multi-objective shortest path algorithm. The algorithm solves for the time-dependent flows for each feasible mode-path combination in the network.; This research also addresses the design of real-time consistent-normative information supply strategies for the auto travelers in the network. Providing travelers with real-time information could help them plan their trips efficiently and achieve better spatial-temporal network traffic distribution. The problem is formulated as a bi-level mathematical program where the main objective is to minimize the total travel time in the network, while the secondary objective is to minimize the difference between the provided information and experienced travel times.
机译:在世界上大多数城市地区,私家车的使用仍在继续增加,加剧了各种相关问题,例如交通拥堵,环境恶化和高油耗。随着土地使用活动模式在许多城市中的分散,公共交通系统的设计面临着严峻的挑战,以提供有效的替代私家车的手段。一种更合理的方法是设计和推广智能多式联运系统,该系统将私家车与现有或计划的运输方式集成。几种智能交通系统(ITS)功能和用户服务通常属于高级旅行者信息系统(ATIS),高级交通管理系统(ATMS)和高级公共交通系统(APTS)领域,它们为管理流量并改善联运网络中的运营。向用户提供有关网络拥塞,公交方式的可用性和状态的实时信息,可以有助于现有模式之间的有效整合,从而为旅行者提供更高效的出行方式。本研究为城市联运网络建立了随机动态旅行分配模型。该模型克服了当前实践中使用的静态工具的局限性。这些局限性与可能要评估的替代措施的类型有关,越来越多地要求规划机构解决政策问题。该模型捕获了在不同信息提供策略和网络控制方案下模式选择与动态分配之间的相互作用。针对该问题,提出了一种基于仿真的求解算法。该模型结合了用于联运网络的随机网络负载模型和多目标最短路径算法。该算法为网络中每种可行的模式-路径组合求解时间相关的流。这项研究还解决了网络中自动旅行者实时一致的规范信息提供策略的设计问题。向旅行者提供实时信息可以帮助他们有效地计划行程,并实现更好的时空网络流量分配。该问题被表述为一个双层数学程序,其主要目标是使网络中的总旅行时间最小化,而次要目标是使所提供的信息与经历的旅行时间之间的差异最小。

著录项

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 233 p.
  • 总页数 233
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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