具有独特电力电子接口的微电网混合储能系统

I. Vechiu, Aitor Etxeberria, H. Camblong, S. Baudoin, S. Kreckelbergh
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引用次数: 5

摘要

基于可再生能源的分布式发电系统的日益普及给现有的集中式电网带来了新的挑战。微电网是整合可再生能源技术最有用和最有效的方式之一。由于微电网的稳定性是高度敏感的,储能系统是必不可少的,它必须满足两个标准:具有高的存储容量和能够提供快速的电力变化。为了满足这两个约束条件,本文提出了钒氧化还原电池(VRB)和超级电容器(SC)组在混合储能系统(HESS)中的结合。三电平中性点箝位(3LNPC)逆变器被用作HESS和微电网之间的独特接口。本文重点研究了HESS的动态建模和验证,以及与3LNPC一起使用的功率划分和调制策略,以减轻中性点电压不平衡效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid energy storage system with unique power electronic interface for microgrids
The increasing penetration of Distributed Generation systems based on Renewable Energy Sources is introducing new challenges in the current centralized electric grid. Microgrids are one of the most useful and efficient ways to integrate the renewable energy technologies. As the stability of a microgrid is highly sensitive, an energy storage system is essential and it must satisfy two criteria: to have a high storage capacity and to be able to supply fast power variations. In order to satisfy these two constraints, this paper proposes the association of a Vanadium Redox Battery (VRB) and Supercapacitor (SC) bank in a Hybrid Energy Storage System (HESS). A Three-level Neutral Point Clamped (3LNPC) Inverter is used as a unique interface between the HESS and the microgrid. The paper focuses on the dynamic modelling and validation of the HESS, the power division and the modulation strategies used with the 3LNPC to mitigate the neutral point voltage unbalance effect.
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