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Modelling bus bunching and holding control with vehicle overtaking and distributed passenger boarding behaviour

机译:通过车辆超车和分布式乘客登机行为对公交车聚集和控制进行建模

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摘要

Headway fluctuation and bus bunching are commonly observed in transit operations, while holding control is a proven strategy to reduce bus bunching and improve service reliability. A transit operator would benefit from an accurate forecast of bus propagation in order to effectively control the system. To this end, we propose an ‘ad-hoc’ bus propagation model taking into account vehicle overtaking and distributed passenger boarding (DPB) behaviour. The latter represents the dynamic passenger queue swapping among buses when bunching at bus stops occurs and where bus capacity constraints are explicitly considered. The enhanced bus propagation model is used to build the simulation environment where different holding control strategies are tested. A quasi first-depart-first-hold (FDFH) rule is applied to the design of headway- and schedule-based holding control allowing for overtaking, with the objective to minimise the deviation from the targeted headway. The effects of control strategies are tested in an idealized bus route under different operational setting and in a real bus route in Guangzhou. We show that when the combined overtaking and queue-swapping behaviour are considered, the control strategies can achieve better headway regularity, less waiting time and less on-board travel time than their respective versions without overtaking and DPB. The benefit is even greater when travel time variability is higher and headway is smaller, suggesting that the control strategies are preferably deployed in high-frequency service.
机译:在公交运营中通常会观察到车头波动和公交车聚束,而保持控制是减少公交车聚束和提高服务可靠性的行之有效的策略。公交运营商将受益于公交车传播的准确预测,以便有效地控制系统。为此,我们提出了一种“临时”公交传播模型,其中考虑了车辆超车和分布式乘客登机(DPB)行为。后者表示在公交车站处发生集束并且明确考虑公交容量限制的情况下,公交车之间的动态乘客队列交换。增强的总线传播模型用于构建仿真环境,在其中测试了不同的保持控制策略。准首发-先停(FDFH)规则适用于基于超车和进度的超车控制设计,允许超车,目的是使与目标超车的偏差最小。在不同的运营环境下,在理想的公交路线上以及广州的实际公交路线上,对控制策略的效果进行了测试。我们显示出,当考虑到超车和队列交换的组合行为时,与不采用超车和DPB的相应版本相比,控制策略可以实现更好的时速规则性,更少的等待时间和更少的机上旅行时间。当行程时间可变性较高且行驶距离较小时,好处更大,这表明控制策略最好部署在高频服务中。

著录项

  • 作者

    Wu, W; Liu, R; Jin, W;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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