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Modeling driver behavior in work zones: An evaluation of traffic flow impacts in freeway work zones with full lane closures.

机译:在工作区域中对驾驶员行为进行建模:评估具有完全车道封闭的高速公路工作区域中的交通流量影响。

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摘要

About twenty percent of the U.S. National Highway System is under construction during the peak summer roadwork season. Fifty percent of all highway congestion is attributed to nonrecurring conditions and work zones are estimated to account for nearly twenty four percent of nonrecurring delay. Work zones account for two percent of roadway crashes and more than 1,000 fatalities per year.; The major question on which this research focuses is: "How do work zone delineation strategies, intelligent transportation systems (ITS) technologies, and driver behavior impact traffic flow and crash potential in and around work zones?" To address this question effectively, one might consider assessing actual traffic situations under local conditions with the aid of a microscopic simulation model. Such simulation tools could be useful to individuals designing work zone deployment plans, developing work zone traffic management concepts, deciding on the use of ITS applications in work zones, and formulating alternate route strategies. In addition, such tools may improve the ability to visualize the impact of delineation and dynamic merge guidance strategies as well as to quantitatively assess the impact on delay and the occurrence of high crash potential situations in and around work zone areas.; The underlying objective of this research is to improve the way researchers and practitioners are able to explain and predict traffic conditions and driver behavior as they are impacted by work zone strategies including variable message signs, static signage, tapers, arrow boards, and positive separation.; Central to this research was the formulation of an algorithm that improves upon traditional car following theory by incorporating factors such as driver familiarity, adaptability, aggression, and accommodation to the changing road conditions found in work zones. The use of these concepts incorporates two notions: (1) drivers must manage interaction with both the roadway and other drivers; and (2) drivers exhibit varying preferences for early or late merges based on their willingness to respond to upcoming lane restrictions and their inclination to be passive or aggressive in forced merge situations.
机译:在夏季道路施工高峰期,约有20%的美国国家公路系统正在建设中。所有高速公路拥堵的百分之五十归因于非经常性情况,据估计工作区占非经常性延误的近百分之二十四。工作区占道路交通事故的2%,每年造成1000多人死亡。这项研究关注的主要问题是:“工作区划定策略,智能交通系统(ITS)技术以及驾驶员行为如何影响工作区及其周围的交通流量和撞车可能性?”为了有效解决这个问题,可以考虑借助微观仿真模型评估当地条件下的实际交通状况。这样的仿真工具对于个人设计工作区部署计划,开发工作区交通管理概念,决定在工作区中使用ITS应用程序以及制定替代路线策略可能很有用。此外,这些工具可以提高可视化轮廓和动态合并指导策略影响的能力,以及定量评估对工作区区域内和周围区域的延误和高碰撞可能性情况的影响。这项研究的基本目标是改善研究人员和从业人员能够解释和预测交通状况和驾驶员行为的方式,因为它们受到工作区策略(包括可变信息标志,静态标志,锥度,箭头板和正分离)的影响。 ;这项研究的核心是制定一种算法,该算法通过结合诸如驾驶员熟悉性,适应性,侵略性以及适应工作区域中不断变化的道路条件等因素来改进传统的汽车跟随理论。这些概念的使用包含两个概念:(1)驾驶员必须管理与道路和其他驾驶员的交互; (2)驾驶员根据对即将到来的车道限制做出反应的意愿,以及在强制合并的情况下表现出被动或积极的倾向,对早期或后期合并表现出不同的偏好。

著录项

  • 作者

    Heaslip, Kevin Patrick, II.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Engineering Civil.; Transportation.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;综合运输;
  • 关键词

  • 入库时间 2022-08-17 11:39:52

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