基于模块化高压电池模块的固定式储能系统

Fei Xue, Yuling Zhao, Ruiyang Yu, Wensong Yu, A. Huang
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引用次数: 5

摘要

本文主要研究了一种基于多个模块化高压电池模块的固定式储能系统的设计与控制。该系统通过高转换率的双向dc-dc变换器作为接口,实现了从400V直流电网到12V电池模块的双向功率流。这种系统的优点之一是它的可扩展性和可扩展性,通过调度更多的电池模块来实现更高的额定功率,以供将来使用。设计、制作并测试了由一台并网固态变压器(SST)仿真器和两台双向dc-dc变换器组成的2kWh储能系统样机。基于改进的下垂控制,分别实现了SST仿真器的双环数字控制系统和dc-dc变换器的单环数字控制系统。最后给出了实验结果,验证了所提出的分布式控制策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stationary energy storage system based on modular high voltage battery modules
This paper focuses on the design and control of a stationary energy storage system based on multiple modular high voltage battery modules. The system achieves bi-directional power flow directly from 400V dc grid to the 12V battery modules via a bi-directional dc-dc converter with high conversion ratio as an interface. One merit of such a system is its extensibility and scalability for higher power rating for future use by dispatching more battery modules together. A 2kWh energy storage system prototype which is made up by one grid-connected solid state transformer (SST) emulator and two bi-directional dc-dc converters are designed, fabricated and tested. Based on the modified droop control, a double-loop digital control system for the SST emulator and a single-loop digital control system for the dc-dc converter are implemented respectively. At last, experimental results are presented to verify the proposed distributed control strategy.
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