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Switching frequency optimization for a solid state transformer with energy storage capabilities

机译:具有储能功能的固态变压器切换频率优化

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This paper is focused on establishing a procedure for measuring the efficiency dependency on the switching frequency for a solid state transformer (SST), being one of the ports connected to an energy storage device (Lithium-Ion battery). Multiple contributions for measuring the efficiency/losses for different power converter structures for energy storage applications can be found in the literature. However, there are few references which consider the effects of the high frequency model of the battery in the complete system performance. This research will obtain a parametric high frequency model of the battery cells, based on a vector fitting method in frequency domain. This model will be used for the estimation of the overall system losses. It will be demonstrated that the contribution of the battery losses, as well as its behavior as a function of the switching frequency, can significantly affect the selection of the converter's switching frequency.
机译:本文专注于建立用于测量固态变压器(SST)的开关频率的效率依赖性的过程,是连接到能量存储装置(锂离子电池)的端口之一。可以在文献中找到测量用于能量存储应用的不同功率转换器结构的效率/损耗的多种贡献。但是,还有很少的参考文献,考虑了电池的高频模型在完整的系统性能中的影响。该研究将基于频域的矢量拟合方法获得电池单元的参数高频模型。该模型将用于估计整体系统损失。据证明,电池损耗的贡献,以及其作为开关频率的函数的行为,可以显着影响转换器的开关频率的选择。

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