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Optimal dispatching of electric and hybrid buses subject to scheduling and charging constraints

机译:受调度和充电约束的电动和混合动力公交车的最佳调度

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We consider the problem of optimally determining the sequence of electric and hybrid buses departing from a multi-line bus terminal, considering both service constraints (schedule adherence) and energy constraints (electric bus charging status, bus recharging scheduling in capacitated facilities). The problem is formulated as a Mixed Integer Linear Program, with the objective of minimizing the total operational cost for the bus lines in question. System dynamics are captured by practical sets of constraints, ranging from scheduling adherence to discharge-recharge dynamics. Individual operational costs at the bus level and at the trip level are fully parametrized, allowing for extensive sensitivity analysis. We investigate a real-life case study based on the city of Luxembourg, where two charging stations have been installed in the central station's bus terminal. Experimental results show that, while full electrification is indeed possible, the required fleet size depends strongly on the given line(s) timetable.
机译:我们考虑到最佳的确定从多线总线终端出发的电动和混合动力公交车的顺序的问题,同时要考虑服务约束(时间表的依从性)和能量约束(电动公交车的充电状态,电容器设施中的公交车充电调度)。该问题被表述为混合整数线性程序,目的是最大程度地减少所讨论的总线的总运营成本。系统动力学是通过实际的约束集来捕获的,这些约束集包括从调度遵守到放电-再充电动力学。完全参数化了公交级别和行程级别的单个运营成本,从而可以进行广泛的灵敏度分析。我们调查了基于卢森堡市的实际案例研究,该市在中央车站的公交总站安装了两个充电站。实验结果表明,尽管确实可以实现完全电气化,但所需的车队规模在很大程度上取决于给定的线路时间表。

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