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Reconfigurable battery energy storage system for utility-scale applications

机译:适用于公用事业规模应用的可重构电池储能系统

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The application and research interest over utility-scale battery energy storage systems have grown significantly over the last years. To achieve utility-scale, series and/or parallel connection of many battery packs with power rating of a few hundreds kilowatts each is the most viable technology at present. The major challenge regarding the connection of battery packs is charging imbalance. This paper proposes a solution using reconfigurable selection panels and series-connected dual-active-bridges to connect many battery packs directly to a medium voltage level bus. The proposed control algorithm facilitates optimal battery operation by prioritizing the packs to be used based on different operation conditions, so that rest time for each battery pack is guaranteed. It also optimizes the charging/discharging processes of the packs to extend the life of the batteries. Simulation results using MATLAB/Simulink and PLECS confirm the effectiveness of the proposed solution.
机译:在最近几年中,对公用事业规模的电池储能系统的应用和研究兴趣显着增长。为了实现实用规模,许多额定功率为几百千瓦的许多电池组的串联和/或并联连接,是目前最可行的技术。有关电池组连接的主要挑战是充电不平衡。本文提出了一种使用可重配置选择面板和串联双有源桥将多个电池组直接连接到中压总线的解决方案。所提出的控制算法通过基于不同的运行条件对要使用的电池组进行优先级排序,从而有利于最佳电池运行,从而确保了每个电池组的休息时间。它还优化了电池组的充电/放电过程,以延长电池寿命。使用MATLAB / Simulink和PLECS进行的仿真结果证实了所提出解决方案的有效性。

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