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Performance of Transit Signal Priority with Queue Jumper Lanes

机译:带有队列跳线通道的运输信号优先级的性能

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摘要

Queue jumper lanes are a special type of bus preferential treatment that allows buses to bypass a waiting queue through a right-turn bay and then cut out in front of the queue by getting an early green signal. The performance of queue jumper lanes is evaluated under different transit signal priority (TSP) strategies, traffic volumes, bus volumes, dwell times, and bus stop and detector locations. Four TSP strategies are considered: green extension, red truncation, phase skip, and phase insertion. It was found that queue jumper lanes without TSP were ineffective in reducing bus delay. Queue jumper lanes with TSP strategies that include a phase insertion were found to be more effective in reducing bus delay while also improving general vehicle operations than those strategies that do not include this treatment. Nearside bus stops upstream of check-in detectors were preferred for jumper TSP over far-side bus stops and nearside bus stops downstream of check-in detectors. Through vehicles on the bus approach were found to have only a slight impact on bus delay when the volume-to-capacity (v/c) ratio was below 0.9. However, when v/c exceeded 0.9, bus delay increased quickly. Right-turn volumes were found to have an insignificant impact on average bus delay, and an optimal detector location that minimizes bus delay under local conditions was shown to exist.
机译:排队跳线车道是一种特殊的公交优先处理方式,它使公交车可以通过右转弯的车厢绕过等待的排队,然后通过获取早期的绿色信号而在排队前方切出。在不同的交通信号优先级(TSP)策略,交通量,公交车数量,停留时间以及公交车站和检测器位置的情况下,评估了跳线通道的性能。考虑了四种TSP策略:绿色扩展,红色截断,跳过相位和插入相位。发现没有TSP的队列跳线通道在减少总线延迟方面无效。与不包含这种处理的策略相比,采用包含相插入的TSP策略的队列跳线更加有效地减少了公交车的延误,同时也改善了普通车辆的运行。 TSP跳线TSP优先于签到检测器上游的近侧巴士站,而不是签到检测器下游的近侧巴士站。当容积率(v / c)低于0.9时,发现通过公交车通行车辆对公交车延误仅有轻微影响。但是,当v / c超过0.9时,总线延迟会迅速增加。发现右转音量对平均总线延迟没有明显影响,并且显示了在局部条件下能够使总线延迟最小的最佳检测器位置。

著录项

  • 来源
    《Transportation Research Record》 |2005年第1925期|p.265-271|共7页
  • 作者

    Guangwei Zhou; Albert Gan;

  • 作者单位

    Lehman Center for Transportation Research, Department of Civil and Environmental Engineering, Florida International University, 10555 West Flagler Street, EC 3680, Miami, FL 33174;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 交通运输;
  • 关键词

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