Bidirectional DC-DC converter topologies and control strategies for interfacing energy storage systems in microgrids: An overview

N. Kondrath
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引用次数: 46

Abstract

A microgrid is defined as a local electric power distribution system with diverse distributed generation (DG), energy storage systems, and loads, which can operate as a part of the distribution system or when needed can operate in an islanded mode. Energy storage systems play a key role in improving security, stability, and power quality of the microgrid. During grid-connected mode, these storage units are charged from various DG sources as well as the main grid. During islanded mode, DG sources along with the storage units need to supply the load. Power electronic interfaces between the microgrid buses and the storage units should be able to detect the mode of operation, allow seamless transition between the modes, and allow power flow in both directions, while maintaining stability and power quality. An overview of bidirectional converter topologies relevant to microgrid energy storage application and their control strategies will be presented in this paper.
微电网中双向DC-DC转换器拓扑结构和接口储能系统的控制策略:综述
微电网被定义为具有不同分布式发电(DG)、储能系统和负载的本地配电系统,可以作为配电系统的一部分运行,也可以在需要时以孤岛模式运行。储能系统在提高微电网的安全性、稳定性和电能质量方面发挥着关键作用。在并网模式下,这些存储单元从各种DG源以及主电网充电。在孤岛模式下,DG电源与存储单元一起需要提供负载。微电网母线和存储单元之间的电力电子接口应能够检测运行模式,允许模式之间的无缝转换,并允许功率在两个方向上流动,同时保持稳定性和电能质量。本文将概述与微电网储能应用相关的双向变换器拓扑结构及其控制策略。
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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