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A Comparison of Grid-Connected Battery Energy Storage System Designs

机译:并网电池储能系统设计的比较

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This paper presents a method for evaluating grid-connected battery energy storage system (BESS) designs. The steady-state power losses of the grid interface converter, the battery pack, and the balancing circuit are calculated. The reliability of each complete system is calculated using a Markov-based modeling approach that takes into account the built-in redundancy of the system as well as performance degradation caused by faults. Finally, a simple economic analysis based on capital cost and efficiency is used to provide a basis for direct comparison between competing system designs. Three design options for a 1-MW 1-MWh BESS connected at 11 kV are compared: a conventional BESS using parallel low voltage power blocks, a BESS using a high-voltage intelligent battery pack, and a BESS using a cascaded H-bridge converter. The results of the analysis indicate that additional power electronics included in the battery pack as part of the intelligent battery pack and H-bridge designs can enhance the reliability of the BESS by an order of magnitude under typical conditions, without increasing the overall cost of the system.
机译:本文提出了一种评估并网电池储能系统(BESS)设计的方法。计算出电网接口转换器,电池组和平衡电路的稳态功率损耗。使用基于马尔可夫的建模方法计算每个完整系统的可靠性,该方法考虑了系统的内置冗余以及故障导致的性能下降。最后,基于资本成本和效率的简单经济分析用于为竞争系统设计之间的直接比较提供基础。比较了以11 kV连接的1-MW 1-MWh BESS的三个设计选项:使用并联低压电源块的常规BESS,使用高压智能电池组的BESS和使用级联H桥转换器的BESS 。分析结果表明,作为智能电池组和H桥设计的一部分,电池组中包含的其他电力电子设备可以在典型条件下将BESS的可靠性提高一个数量级,而不会增加电池的整体成本。系统。

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