Enabling Seamless Integration of EV Charging Infrastructure with Weak Electric Grids

M. Mohanpurkar, R. Krishan, M. Panwar, Shashank Vyas, L. Slezak, Neshwin Rodrigues, A. Datta, A. Meintz, R. Hovsapian
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Abstract

Widespread adoption of Electric Vehicles (EVs) for light, medium, and heavy-duty applications has gained significant interest. Based on ownership and user preferences, light duty and local delivery medium-duty EVs are typically connected to grid distribution networks whereas larger medium duty and heavy-duty EVs are typically connected to distribution or even sub-transmission networks. Challenges with at-scale EVs and charging infrastructure supporting them include interoperability, distribution network upgrades, surge in demand charges, power quality issues, voltage stability, etc. Based on real-world data, steady-state and dynamic assessments of light-duty EV charging with a focus on DC Fast Charging (DCFC) for weak distribution grids is presented. Three main areas of contributions in this paper include - steady state and dynamic power quality measurements and assessments using real world data, transient assessments of light duty EV integration with weak distribution networks (IEEE 13 node feeder system) under grid-connected and microgrid modes, and formulation of an intelligent charging decision algorithm to enable an impact-minimal charging.
实现电动汽车充电基础设施与弱电电网的无缝集成
电动汽车(ev)在轻型、中型和重型应用中的广泛采用已经引起了人们的极大兴趣。根据所有权和用户偏好,轻型和本地交付中型电动汽车通常连接到电网配电网,而大型中型和重型电动汽车通常连接到配电网甚至子输电网。大规模电动汽车和支持它们的充电基础设施面临的挑战包括互操作性、配电网络升级、需求费用激增、电能质量问题、电压稳定性等。基于实际数据,以弱配电网直流快速充电为重点,对轻型电动汽车充电进行了稳态和动态评估。本文贡献的三个主要领域包括-使用真实世界数据的稳态和动态电能质量测量和评估,并网和微电网模式下轻型电动汽车与弱配电网络(IEEE 13节点馈线系统)集成的瞬态评估,以及制定智能充电决策算法以实现最小影响充电。
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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