Optimal Charging Management of Microgrid-Integrated Electric Vehicles

G. Ferro, R. Minciardi, L. Parodi, M. Robba
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引用次数: 1

Abstract

The relevance of electric vehicles (EVs) is increasing along with the relative issues. The definition of smart policies for scheduling the EVs charging process represents one of the most important problems. A discrete-event approach is proposed for the optimal scheduling of EVs in microgrids. This choice is due to the necessity of limiting the number of the decision variables, which rapidly grows when a small-time discretization step is chosen. The considered optimization problem regards the charging of a series of vehicles in a microgrid characterized by renewable energy source, a storage element, the connection to the main grid, and a charging station. The objective function to be minimized results from the weighted sum of the cost for purchasing energy from the external grid, the weighted tardiness of the services provided, and a cost related to the occupancy of the socket. The approach is tested on a real case study.
微电网集成电动汽车最优充电管理
随着相关问题的出现,电动汽车的相关性也越来越高。电动汽车充电过程智能调度策略的定义是最重要的问题之一。提出了一种微电网电动汽车优化调度的离散事件方法。这种选择是由于需要限制决策变量的数量,当选择小时间离散步骤时,决策变量的数量会迅速增加。所考虑的优化问题是一系列车辆在以可再生能源、储能元件、与主电网的连接和充电站为特征的微电网中充电。要最小化的目标函数来自于从外部电网购买能源的成本的加权和,所提供服务的加权延迟,以及与占用插座相关的成本。该方法在一个实际案例研究中得到了验证。
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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