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A technical note on evaluating the effectiveness of bus rapid transit with transit signal priority

机译:关于通过公交信号优先权评估公交快速公交有效性的技术说明

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摘要

Transit Signal Priority (TSP) and Bus Rapid Transit (BRT) are innovative Intelligent Transportation System (ITS) tools that can reduce travel times for buses. Combining TSP and BRT can significantly improve bus travel, but can negatively impact network traffic operations. Although TSP has been implemented worldwide, few previous studies holistically examined the effects of using various conditional and unconditional TSP strategies with or without a BRT system. This research simulates multiple TSP and BRT combination scenarios to understand their impact on traffic operations, including crossing street traffic. A test bed along International Drive (I-Drive) in Orlando, Florida, was chosen as the simulation area. Field data collected for this test bed, which included traffic volumes, bus travel times, and traffic signal control data, were used to develop, calibrate, and validate the simulation model. Results showed that BRT with Conditional TSP 3minutes behind significantly improved travel times, average speed, and average total delay per vehicle for the main through movements compared with no BRT or TSP, with only minor effects on crossing street delays. BRT with Unconditional TSP resulted in significant crossing street delays, especially at major intersections with high traffic demand, indicating that this scenario is impractical for implementation. The simulation suggests that BRT and TSP will be most effective when used in areas where crossing street volumes are low. However, it is unknown how these ITS tools affect pedestrian traffic. Using optimization methods can determine the best strategy to balance transit and pedestrian traffic.
机译:公交信号优先(TSP)和公交快速公交(BRT)是创新的智能交通系统(ITS)工具,可以减少公交车的出行时间。将TSP和BRT结合使用可以显着改善公交出行,但会对网络流量运营产生负面影响。尽管TSP已在全球范围内实施,但以前的研究很少全面地研究使用带有或不带有BRT系统的各种条件和无条件TSP策略的效果。这项研究模拟了多个TSP和BRT组合方案,以了解它们对交通运营(包括过街交通)的影响。沿着佛罗里达州奥兰多国际大道(I-Drive)的测试台被选为模拟区域。为此测试台收集的现场数据(包括交通量,公交车行驶时间和交通信号控制数据)用于开发,校准和验证仿真模型。结果表明,与无BRT或TSP相比,带条件TSP落后3分钟的BRT可以显着改善主要交通方式的行驶时间,平均速度和每辆车的平均总延迟,而对过马路延迟的影响很小。具有无条件TSP的BRT导致严重的过马路延误,特别是在交通需求高的主要交叉路口,这表明这种情况对于实施是不切实际的。该模拟表明,在过马路交通量较低的地区使用BRT和TSP会最有效。但是,尚不清楚这些ITS工具如何影响行人交通。使用优化方法可以确定平衡交通和行人交通的最佳策略。

著录项

  • 来源
    《ITS Journal》 |2017年第6期|227-238|共12页
  • 作者单位

    Univ Cent Florida, Dept Civil Environm & Construct Engn, 12800 Pegasus Dr,Suite 211,POB 162450, Orlando, FL 32816 USA;

    Univ Cent Florida, Dept Civil Environm & Construct Engn, 12800 Pegasus Dr,Suite 211,POB 162450, Orlando, FL 32816 USA;

    Univ Cent Florida, Dept Civil Environm & Construct Engn, 12800 Pegasus Dr,Suite 211,POB 162450, Orlando, FL 32816 USA;

    Univ Cent Florida, Dept Civil Environm & Construct Engn, 12800 Pegasus Dr,Suite 211,POB 162450, Orlando, FL 32816 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bus rapid transit; transit signal priority;

    机译:快速公交;公交信号优先;

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