论文标题
重型电动汽车的电网冲击分析和缓解途中充电站
Grid Impact Analysis and Mitigation of En-Route Charging Stations for Heavy-Duty Electric Vehicles
论文作者
论文摘要
本文介绍了重型电动汽车(EV)充电站的合并网格影响分析设计和相应的缓解策略。重型充电站的充电负载可以达到几兆瓦,如果没有有效缓解,这可能会对分配网格产生不利影响。为了分析影响并提供相应的解决方案,我们选择了四个代表性的分布系统 - 包括单馈案例和一个多进料机案例 - 以及为影响分析设计彻底的测试指标。分析中使用的充电负荷轮廓来自现实的常规重型车辆旅行数据。根据分析结果,充电站位于每个分配系统中的三个不同代表性位置:最佳,良好和最差的位置。提出并测试了使用智能充电器功能,现场光伏(PV)生成和现场储能(ES)的结合进行缓解策略。还提出了一种尺寸的方法,以找到最佳的PV-ES授权能力,以最大程度地减少资本成本。
This paper presents a consolidated grid impact analysis design and corresponding mitigation strategies for heavy-duty electric vehicle (EV) charging stations. The charging load of heavy-duty charging station can reach several megawatts, which could induce adverse impacts on the distribution grid if not effectively mitigated. To analyze the impacts and provide corresponding solutions, we select four representative distribution systems - including both single-feeder cases and a multi-feeder case - and design thorough test metrics for the impact analysis. The charging load profiles used in the analysis are derived from realistic conventional heavy-duty vehicle travel data. Based on the analysis results, charging stations are placed at three different representative locations in each distribution system: best, good, and worst locations. Mitigation strategies using a combination of smart charger functionality, on-site photovoltaic (PV) generation, and on-site energy storage (ES) are proposed and tested. A sizing method is also proposed to find the optimal PV-ES-charger capacity that minimizes the capital cost.