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Signal Phasing Strategies for Intersections with an Exclusive Bicycle Path.

机译:具有专用自行车道的交叉路口的信号定相策略。

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摘要

Over the past few years in the United States, there has been a gradual increase among many public agencies installing experimental exclusive bicycle traffic signals in conjunction with vehicular traffic signals. These signals, mostly found at intersections with protected two-way bicycle paths, may cause operational inefficiencies if unsatisfactory phasing strategies are used. The source of the issue stems from difficulty in developing a phasing strategy where simultaneous vehicular movement is to not come into conflict with any concurrent bicycle movement, particularly the vehicular right-turn movement adjacent to a bicycle path. Additionally, as a new signal type, there has been a lack of general guidelines on how to develop an efficient strategy that not only accommodate bicycle traffic signals, but also pedestrian signals.;The goal of this research was to develop different strategies to accommodate bicycle traffic signals. The strategies are based on a case study intersection where a bicycle signal has been installed and is causing operational inefficiencies. Three strategies was developed for each split and lead-lag phasing using a combination of overlaps, dummy phases, and phase modifiers. Using the simulation software VISSIM, a model was developed based on the case study's intersection roadway geometry and signal timing. Each strategy is then implemented and evaluated for the capacity and delay of the right-turn lane by varying bicycle and pedestrian volumes. Analytical models based on Poisson distribution were developed for the capacity and delay of the right-turn lane and checked with simulation results for validation. The current intersection operation was also evaluated using current traffic volumes, and implementing all three split design strategies.;The results from simulation showed low delays and high capacity for the vehicular right-turn lane at low bicycle and pedestrian volumes. Vice versa, higher delay and lower capacity for the vehicular right-turn lane at higher bicycle and pedestrian volumes resulted, which is expected. A reduction of the current operation's right-turn lane average delay was observed with the implementation of all three solutions. And finally, the results from simulation indicate that each strategy will be advantageous at different bicycle and pedestrian demands.
机译:在过去的几年中,在美国许多公共机构中,逐渐增加了安装试验性专用自行车交通信号灯和车辆交通信号灯的公共机构。如果使用不令人满意的调相策略,这些信号通常会在带有受保护的双向自行车道的交叉路口发现,可能会导致运行效率低下。问题的根源在于难以制定定相策略,在该定相策略中,同时进行的车辆运动不得与任何同时发生的自行车运动发生冲突,尤其是邻近自行车道的车辆右转运动。此外,作为一种新型信号,缺乏如何制定一种既能适应自行车交通信号又能适应行人信号的有效策略的通用指南。交通信号。这些策略基于个案研究交叉口,在该交叉口中已安装了自行车信号,并导致操作效率低下。针对每种分裂和超前-滞后定相开发了三种策略,结合了重叠,虚拟相位和相位修改器。使用仿真软件VISSIM,基于案例研究的交叉路口巷道几何形状和信号时序开发了一个模型。然后通过改变自行车和行人的体积来实施和评估每种策略的右转车道的通行能力和延误。基于泊松分布的分析模型针对右转车道的通行能力和延误进行了开发,并通过仿真结果进行了验证。还使用当前的交通量评估了当前的交叉路口操作,并实施了所有三种拆分设计策略。仿真结果表明,在自行车和行人流量较低的情况下,车辆右转车道的延误时间短且通行能力高。反之亦然,在较高的自行车和行人通行量的情况下,导致车辆右转车道的延迟增加和通行能力降低,这是可以预期的。通过实施所有三个解决方案,可以观察到当前操作的右转车道平均延误有所减少。最后,仿真结果表明,每种策略在不同的自行车和行人需求下都将是有利的。

著录项

  • 作者

    Jayankura, Andrew V.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Civil engineering.;Urban planning.;Transportation.
  • 学位 M.S.
  • 年度 2015
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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