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Capacity Modeling and Control Optimization for a Two-Lane Highway Lane-Closure Work Zone

机译:两车道高速公路车道封闭工作区的容量建模和控制优化

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摘要

A two-lane highway lane-closure work zone is a unique work-zone type because of its traffic impact. When one lane of traffic is blocked, it is necessary to implement a traffic control strategy to effectively serve bidirectional traffic. In the sense that the right of way is allocated between two directions sequentially, traffic control at two-lane highway work zones is similar to signalized intersection traffic control. In order to analyze the problem, this study proposes two primary methodologies: (1) mathematical capacity and delay functions based on signalized intersection theory, and (2) a microsimulation model calibrated using field observed data. After fine-tuning the parameters, the mathematical functions were able to estimate delays with reasonable accuracy. The models developed in this study were applied in the optimization of a two-lane highway lane-closure work-zone control management plan. The resultant delay-capacity diagrams indicate that for pretimed control, roadway capacity should be maintained at a slightly higher level than the traffic demand, whereas the dynamic traffic control scheme is able to achieve lower delay results than the optimal pretimed signal control.
机译:两车道的高速公路车道封闭工作区是一种独特的工作区,因为它会影响交通。当一个车道被阻塞时,有必要实施一种交通控制策略,以有效地为双向交通服务。从在两个方向之间顺序分配通行权的意义上讲,两车道高速公路工作区的交通控制类似于信号交叉口交通控制。为了分析问题,本研究提出了两种主要的方法:(1)基于信号交叉理论的数学能力和延迟函数,以及(2)使用现场观测数据校准的微仿真模型。在对参数进行微调之后,数学函数能够以合理的精度估算延迟。在这项研究中开发的模型被应用于优化两车道的高速公路封闭行车区控制管理计划。由此产生的延迟能力图表明,对于预定时控制,道路通行能力应维持在略高于交通需求的水平,而动态交通控制方案能够实现比最佳预定时信号控制更低的延迟结果。

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  • 来源
    《Journal of Transportation Engineering》 |2017年第12期|04017059.1-04017059.9|共9页
  • 作者单位

    Dept. of Civil and Environmental Engineering, Univ. of Washington, Seattle, WA 98195;

    School of Transportation, Southeast Univ., Nanjing 210096, China Dept. of Civil and Environmental Engineering, Univ. of Washington, Seattle, WA 98195;

    Dept. of Civil and Environmental Engineering, Univ. of Washington, Seattle, WA 98195;

    Dept. of Civil and Environmental Engineering, Univ. of Washington, Seattle, WA 98195;

    Jiangsu Key Laboratory of Urban ITS, Southeast Univ., Nanjing 210096, China;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:55:33

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