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Analytical modeling of a medium-voltage and high-frequency resonant coaxial-type power transformer for a solid state transformer application

机译:用于固态变压器应用的中电压和高频谐振同轴型电力变压器的分析建模

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This paper introduces a unique medium-voltage and high-frequency resonant coaxial-type power transformer (RCT) for a power-distribution level Solid State Transformer (SST) application [1]. The dc-dc stage of the SST application requires a compact high performance resonant transformer that operates under high electric stress and frequency. The RCT discussed in this work brings the virtues of the coaxial-type transformer, which has been use in radio frequency applications, to medium-voltage power conversion applications. The high frequency parasitic effects, which are negligible at 60Hz, become a significant concern in a SST operating above kHz range. Hence, the parasitics of the transformer need to be accurately predicted and controlled for quality power control and safety. The RCT not only minimizes the parasitics of the transformer but also integrates a resonant tank comprised of a series inductance and shunt capacitance by utilizing the stray magnetic and electric flux within the transformer. The limited space in compact size is efficiently used and materials can be optimized. The unique analytic design method of an RCT is introduced and the equivalent circuit model is developed in this paper. The specific design is based on the high performance transformer for a dual-active bridge (DAB) converter, which is one of the most popular topologies in bidirectional power conversion, in the dc-dc stage of the SST application being developed at the FREEDM System Center and its concept is verified with FEM analysis and experiments.
机译:本文介绍了一种独特的中电压和高频谐振同轴型电力变压器(RCT),用于配电水平固态变压器(SST)应用[1]。 SST应用的DC-DC级需要紧凑的高性能谐振变压器,在高电应力和频率下运行。本作品中讨论的RCT带来了同轴型变压器的优点,该变压器已经用于射频应用,中压力转换应用。在60Hz的高频寄生效应可以忽略不计,在kHz范围内的SST中成为一个重要问题。因此,需要准确地预测和控制变压器的寄生剂以进行质量功率控制和安全性。 RCT不仅最小化了变压器的诱导剂,而且还通过利用变压器内的杂散磁通和电量来集成由串联电感和分流电容的谐振槽。有效地使用紧凑型的有限空间,可以优化材料。介绍了RCT的独特分析设计方法,本文开发了等效电路模型。特定设计基于​​双极桥(DAB)转换器的高性能变压器,这是双向电力转换中最受欢迎的拓扑之一,在SST应用程序的SST应用程序的DC-DC阶段在Freedm系统中开发中心及其概念以有限元分析和实验验证。

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