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Integrating Bus Holding Control Strategies and Schedule Recovery: Simulation-Based Comparison and Recommendation

机译:集成总线保持控制策略和时间表恢复:基于仿真的比较和建议

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In the absence of control strategies, headway fluctuation and bus bunching are commonly observed in transit operation due to the stochastic attributes such as travel time and passenger demand. Existing research on real-time control largely focused on developing operational tactics to maintain bus arrival regularity at stops without fully considering the effect of schedule recovery. This paper investigates the effect of bus driver behavior on bus holding control strategies and more specifically their effort in catching up with schedule in case of delay, i.e., schedule recovery. To this end, this paper first proposes a bus propagation model with capacity constraint to simulate the evolution of bus trajectories along a fixed route. It proceeds to explicitly incorporate both holding control actions and schedule recovery effect into the bus propagation model. Using simulation for a high-frequency bus line in Guangzhou, China, schedule- (SH) and headway-based holding (HH) control strategies are compared under various operational settings in the context of schedule recovery. These comparisons show that SH performs better under certain conditions, and SH generally benefits more from schedule recovery than HH. These results provide insights into the bus stop layout design and implementation of holding methods in the context of cruising guidance.
机译:在缺乏控制策略的情况下,由于诸如旅行时间和乘客需求等随机属性,在公交运营中通常会观察到车头波动和公交车集中。现有的实时控制研究主要集中在制定操作策略上,以在不充分考虑时间表恢复效果的情况下,保持公交车站到站的规律性。本文研究了公交车司机行为对公交车保持控制策略的影响,尤其是在延误(即恢复时间表)的情况下,他们努力追赶进度的努力。为此,本文首先提出了一种具有容量约束的公交传播模型,以模拟公交路线沿固定路线的演变。它继续将保持控制动作和调度恢复效果明确地合并到总线传播模型中。通过对中国广州市的一条高频公交线路进行仿真,在时间表恢复的背景下,比较了各种运行设置下的时间表(SH)和基于车距的保持(HH)控制策略。这些比较表明,SH在某些条件下的性能更好,并且与HH相比,SH从计划恢复中获得的收益通常更多。这些结果提供了在巡航指导背景下对公交车站布局设计和保持方法实施的见解。

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