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A review of power electronics for grid connection of utility-scale battery energy storage systems

机译:公用事业规模电池储能系统并网电力电子综述

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摘要

© 2010-2012 IEEE. The increasing penetration of renewable energy sources (RES) poses a major challenge to the operation of the electricity grid owing to the intermittent nature of their power output. The ability of utility-scale battery energy storage systems (BESS) to provide grid support and smooth the output of RES in combination with their decrease in cost has fueled research interest in this technology over the last couple of years. Power electronics (PE) is the key enabling technology for connecting utility-scale BESS to the medium-voltage grid. PE ensure energy is delivered while complying with grid codes and dispatch orders. Simultaneously, the PE must regulate the operating point of the batteries, thus for instance preventing overcharge of batteries. This paper presents a comprehensive review of PE topologies for utility BESS that have been proposed either within industry or the academic literature. Moreover, a comparison of the presently most commercially viable topologies is conducted in terms of estimated power conversion efficiency and relative cost.
机译:©2010-2012 IEEE。由于电力输出的间歇性,可再生能源(RES)的不断普及给电网的运行带来了重大挑战。在过去的几年中,公用事业规模的电池储能系统(BESS)提供电网支持,使RES的输出平稳并降低成本的能力激发了对该技术的研究兴趣。电力电子(PE)是将公用事业级BESS连接到中压电网的关键启用技术。 PE确保在遵守电网规范和调度命令的同时输送能源。同时,PE必须调节电池的工作点,从而防止电池过度充电。本文介绍了针对工业BESS的PE拓扑的全面综述,这些拓扑已在行业或学术文献中提出。此外,就估计的功率转换效率和相对成本而言,对目前最商业可行的拓扑进行了比较。

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