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A Passive Transit Signal Priority Approach for Bus Rapid Transit System

机译:总线快速传输系统的无源传输信号优先态方法

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The objective of Bus Signal Priority (BSP) for Bus Rapid Transit System (BRT) is not only decreasing buses delay but also enhancing the reliability of bus service by keeping buses on schedule or maintaining bus headway adherence. One problem with existing bus priority strategies is that they do not care about the variances of sequential buses delay at intersections. Usually buses arrive at intersection at defined frequency and leave it at dramatically fluctuating headways because the signal statuses when each bus arrives at the intersection and delay for each bus are different. For BRT system, the travel time reliability of buses on links is improved dramatically, traffic signal control system may be the main sources to induce bus headway fluctuation and schedule deviation. This paper mathematically depicted the relationship between the departure frequency of a BRT bus line, cycle length of signalized intersection and number of Different Signal Status (DSS) when buses arrive at the intersection. The optimal number of DSS, which was found to be ONE, was obtained by analyzing their effects on the bus average delay and deviation of headways. This paper also presented a bus signal priority control strategies for different numbers of DSS. An intersection with an exclusive Bus Rapid Transit (BRT) lane, Wuyingshan-Beiyuan intersection, was adopted to test the proposed model. The results of high performance simulation software VISSIM validate that there are close relationships between bus frequency, signal cycle, number of DSS, bus headway deviation and bus delay. The proposed signal priority strategies can decrease average bus delay and bus headway deviation dramatically without significantly impacting motor vehicles delay.
机译:公交信号优先(BSP)的快速公交系统(BRT)的目的不仅是减少总线延迟,但也通过保持如期总线或保持发车间隔坚持提高公交服务的可靠性。与现有的公交优先战略的一个问题是,他们不关心顺序公交车的差异在路口延误。一般公共汽车到达在定义的频率交点离开它显着地波动的车头时距,因为当每根总线到达交叉点和延迟对于每个总线的信号状态是不同的。为BRT系统,上链路总线的行程时间的可靠性显着提高,交通信号控制系统可以诱导发车间隔波动和进度偏差的主要来源。本文数学描绘的BRT总线的脱离频率,信号交叉口和(DSS)当公共汽车在路口到达不同的信号状态的数目的周期长度之间的关系。通过在车头时距的总线平均延迟和偏差分析其效果得到DSS,这被认为是一项的最佳数目。本文还给出了不同数量的DSS的公交信号优先控制策略。具有独占快速公交(BRT)车道,无影-北苑相交的交点,获得通过以测试提出的模型。高性能模拟软件VISSIM验证的结果,有总线频率,信号周期,DSS的数量,发车间隔偏差和总线延迟之间的密切关系。提出的信号优先策略,可以大大减少平均总线延迟,发车间隔偏差不显著影响机动车辆的延迟。

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