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A Network-Sensitive Integrated Travel Model for Simulating Impacts of Real-Time Traveler Information.

机译:一种网络敏感的综合旅行模型,用于模拟实时旅行者信息的影响。

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摘要

Real-time information systems are being used widely around the world to mitigate the adverse impacts of congestion and events that contribute to network delay. It is important that transportation modeling tools be able to accurately model the impacts of real-time information provision. Such planning tools allow the simulation of the impacts of various real-time information systems, and the design of traveler information systems that can minimize impacts of congestion and network disruptions. Such modeling tools would also be helpful in planning emergency response services as well as evacuation scenarios in the event of a natural disaster. Transportation modeling tools currently in use are quite limited in their ability to model the impacts of real-time information provision on travel demand and route choices. This dissertation research focuses on enhancing a previously developed integrated transportation modeling system dubbed SimTRAVEL (Simulator of Transport, Routes, Activities, Vehicles, Emissions, and Land) to incorporate capabilities that allow the simulation of the impacts of real-time traveler information systems on activity-travel demand. The first enhancement made to the SimTRAVEL framework involves the ability to reflect the effects of providing information on prevailing (as opposed to historical) network conditions on activity-travel behavior choices. In addition, the model system is enhanced to accommodate multiple user information classes (pre-trip and enroute) simultaneously. The second major contribution involves advancing the methodological framework to model enroute decision making processes where a traveler may alter his or her travel choices (such as destination choice) while enroute to an intended destination. Travelers who are provided up-to-date network information may choose to alter their destination in response to congested conditions, or completely abandon and reschedule an activity that offers some degree of flexibility. In this dissertation research, the model framework is developed and an illustrative demonstration of the capabilities of the enhanced model system is provided using a subregion of the Greater Phoenix metropolitan area in Arizona. The results show that the model is able to simulate adjustments in travel choices that may result from the introduction of real-time traveler information. The efficacy of the integrated travel model system is also demonstrated through the application of the enhanced model system to evaluate transportation policy scenarios.
机译:实时信息系统在世界范围内得到广泛使用,以减轻拥塞和事件造成的网络延迟的不利影响。运输建模工具必须能够准确地建模实时信息提供的影响,这一点很重要。这种计划工具可以模拟各种实时信息系统的影响,并可以设计旅行者信息系统,以最大程度地减少拥塞和网络中断的影响。这样的建模工具也将有助于在自然灾害情况下计划应急服务以及疏散方案。当前使用的运输建模工具在建模实时信息提供对旅行需求和路线选择的影响方面的能力非常有限。本论文的研究重点是增强先前开发的称为SimTRAVEL(交通,路线,活动,车辆,排放物和土地的模拟器)的综合交通建模系统,以纳入允许模拟实时旅行者信息系统对活动影响的功能。 -旅行需求。 SimTRAVEL框架的第一个增强功能是能够反映提供有关主要(相对于历史)网络条件的信息对活动-出行行为选择的影响。此外,模型系统得到了增强,可以同时容纳多个用户信息类别(旅行前和途中)。第二个主要贡献涉及改进方法框架以对途中决策过程建模,在此过程中,旅行者可以在前往目的地的途中更改其旅行选择(例如目的地选择)。提供最新网络信息的旅行者可以根据拥挤的条件选择更改目的地,或者完全放弃并重新安排可提供一定程度灵活性的活动。在本论文的研究中,开发了模型框架,并使用亚利桑那州大凤凰城都会区的一个子区域提供了增强模型系统功能的说明性演示。结果表明,该模型能够模拟可能由于引入实时旅行者信息而导致的旅行选择调整。通过将增强的模型系统应用于评估运输政策方案,也证明了综合旅行模型系统的有效性。

著录项

  • 作者

    You, Dae Hyun.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Civil.;Transportation.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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