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Analysis of Bus Bunching Impact on Car Delays at Signalized Intersections

机译:信号交叉口公交车束束对汽车延误的影响分析

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In uncontrolled bus systems, buses tend to bunch due to the stochastic nature of traffic flows and passenger demands at bus stops. It is widely acknowledged that bus bunching affects transit operations increasing passenger waiting times and variability. However, transit systems are a part of urban transportation systems. Accordingly, buses also affect traffic flows at signalized intersections leading to additional car delays. In this paper, the impact of a linear bus stop on cars caused by one bus is analyzed by employing the shockwave theory. Further, the operating characteristics of bus bunching in terms of the dwell time at a linear stop are analyzed, in both passenger self-organization and stop-skipping control strategy scenarios. Then, the total dwell time of two bunched buses is calculated, considering different passengers on the two successive buses and the difference between boarding and alighting passengers. Finally, the proposed car delays model is simulated with the aid of computer, where numerical analysis is done to obtain the difference in car delays between two evenly spaced buses and two bunched buses. The results of the numerical analysis indicate that bunched buses lead to additional car delays compared to evenly spaced buses. In addition, numerical tests are conducted for the self-organization and stop-skipping control strategies considering imbalanced passengers on two successive buses and the difference between boarding and alighting passengers. The results show that larger differences between the numbers of passengers on the two bunched buses and lower differences between the numbers of boarding and alighting passengers lead to larger car delays.
机译:在不受控制的公交车系统中,由于交通流量的随机性和公交车站的乘客需求,公交车易于成束。众所周知,公交车的拥挤会影响公交运营,从而增加乘客的等候时间和变化性。但是,公交系统是城市交通系统的一部分。因此,公交车还会影响信号交叉口的交通流量,导致额外的汽车延误。本文利用冲击波理论分析了线性公交车站对一辆公交车造成的影响。此外,在乘客自组织和停站跳过控制策略方案中,分析了基于线性停靠停留时间的公交车束的运行特性。然后,考虑到两个连续公交车上的不同乘客以及上下车乘客之间的差异,计算了两个成束公交车的总停留时间。最后,利用计算机对提出的汽车延误模型进行了仿真,并进行了数值分析,以获得两辆等距公交车和两辆成束公交车之间的汽车延误差异。数值分析的结果表明,与等距公交车相比,成束的公交车导致额外的汽车延误。此外,还针对自组织和停站控制策略进行了数值测试,考虑了两辆连续公交车上乘客的不平衡状况以及上下车乘客之间的差异。结果表明,两个成束公交车上的乘客数量之间的较大差异,而上下车的乘客数量之间的较小差异导致较大的汽车延误。

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