Introduction of a Self-Stabilizing Decentralized Energy Management System for Undersupplied EV Charging Parks

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Raffael Schwanninger;Juliane Friedrich;Kilian Drexler;Melanie Lavery;Martin Maerz
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引用次数: 0

Abstract

In this article, a decentralized self-stabilizing Energy Management System for undersupplied EV charging parks is presented. This undersupply is due to the maximum power demand from all charging stations connected to a common DC grid being larger than the maximum infeed power from AC mains. The EMS allows easy addition of additional participants such as chargers, or storage systems, into the common DC grid. To assure grid stability, this decentralization necessitates adjustments to the control structure of connected power converters. To show the self-stabilizing effect, a simulation model based on real-world charging park data evaluates the EMS under varying levels of undersupply and storage capacity. The findings are further verified by implementation of the EMS into actual power converters and their stability assessment through impedance measurement.
供给不足的电动汽车充电公园自稳定分散能源管理系统的引入
本文提出了一种针对供给不足的电动汽车充电公园的分散自稳定能量管理系统。这种供应不足是由于连接到共同直流电网的所有充电站的最大功率需求大于交流电源的最大输入功率。EMS允许在普通直流电网中轻松添加额外的参与者,如充电器或存储系统。为了确保电网的稳定性,这种分散化需要调整连接的电源转换器的控制结构。为了展示自稳定效应,建立了基于真实充电园数据的仿真模型,对不同供给不足和储能水平下的EMS进行了评估。通过在实际电源变换器中的应用以及阻抗测量对变换器的稳定性进行评估,进一步验证了研究结果。
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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来源期刊
CiteScore
8.60
自引率
0.00%
发文量
0
审稿时长
8 weeks
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