电池电动汽车快速充电基础设施中电池储能系统的优化选型

Q4 Engineering
Pedro Félix
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引用次数: 0

摘要

随着电池电动汽车(BEV)和插电式混合动力电动汽车(PHEV)数量的不断增加,城市和高速公路上需要更多的快速充电站。这些充电站需要通过现有设施与电网连接,从而造成电力供应等方面的限制。 本研究通过部署电池储能系统(BESS)来应对这一挑战,为此类能源枢纽的规划和运营提供了一种方法。通过 BESS 集成,可望最大限度地降低利用率和总体能源成本,防止基础设施升级,并加强可再生能源资源的集成。 这种方法通过对规划和运行阶段的共同优化,确定了采用锂离子技术电池的固定储能系统的规模,并将其集成到一个将实施快速充电站的电气装置中。该方法是基于内点算法进行优化的结果,其目标是最大限度地降低 BESS 的维护、运行和安装成本,同时对 BESS、充电站、电动汽车充电和光伏发电等不同资源进行适当建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Battery Energy Storage System Optimal Sizing in a Battery Electric Vehicle Fast Charging Infrastructure
The growing number of battery electric vehicles (BEV) and plug-in hybrid electric vehicles (PHEV) brings the need of more fast charging stations across cities and highway stops. This charging stations toned to be connected to the electrical grid via existent facilities, causing constraints such as power availability. This study brings an approach for the planning and operation of such energy hubs by coping with this challenge by deploying a Battery-based Energy Storage System (BESS). With the BESS integration, it is expected to minimize utilization and overall energy costs, preventing infrastructure upgrades, and enhancing the integration of renewable energy resources. This approach sizes a stationary energy storage system with lithium-ion technology batteries through a co-optimization of the planning and operation stages, integrated in an electrical installation that will implement fast charging stations. This sizing is a result of an optimization based on the interior point algorithm, where the objective is to minimize the costs of maintenance, operation, and installation of a BESS, while properly modelling the different resources such as the BESS, the charging station and EV charging and PV generation.
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来源期刊
U.Porto Journal of Engineering
U.Porto Journal of Engineering Engineering-Engineering (all)
CiteScore
0.70
自引率
0.00%
发文量
58
审稿时长
20 weeks
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