Optimal charging of electric buses: a periodic discrete event approach

V. Casella, G. Ferro, R. Minciardi, L. Parodi, M. Robba
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引用次数: 2

Abstract

The use of electrical buses (EBs) is increasing all over the world to reduce pollution in cities. However, EBs’ charging represents a high load and, to minimize costs, it is necessary to optimally manage the recharge according to the intrinsically periodic arrivals and departures of vehicles. Moreover, they can participate in demand response programs to help the distribution system operator to manage the electrical grid in emergencies. In this paper, we propose a new model and a periodic discrete event approach for the optimal charging of EBs. The considered optimization problem minimizes costs, the maximum power taken from the external grid, and the dissatisfaction related to demand response requests. The considered system is characterized by different vehicles that should be charged by the same charging station in a depot in which storage systems are present too. The developed model can be used either for the management of charging in a depot or to participate to demand response programs. The resulting optimization problem has been applied to a real case study in the Genoa Municipality in which a fleet of EBs is present.
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电动公交车最优充电:周期离散事件方法
世界各地越来越多地使用电动公交车(EBs)来减少城市污染。然而,电动汽车的充电代表着高负荷,为了最大限度地降低成本,有必要根据车辆固有的周期性到达和离开来优化管理充电。此外,他们还可以参与需求响应计划,帮助配电系统运营商在紧急情况下管理电网。本文提出了一个新的模型和一个周期离散事件方法来求解EBs的最优充电。所考虑的优化问题使成本、从外部电网获取的最大功率以及与需求响应请求相关的不满意最小化。所考虑的系统的特点是不同的车辆应该在存储系统也存在的仓库中的同一个充电站充电。所建立的模型既可用于车厂的充电管理,也可用于参与需求响应计划。由此产生的优化问题已应用于热那亚市的一个实际案例研究,该案例中存在一个EBs车队。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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