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High Frequency AC Inductor Analysis and Design for Dual Active Bridge (DAB) Converters

机译:双有源桥(DaB)变换器的高频交流电感分析与设计

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摘要

The dual active bridge (DAB) converter is an isolated bidirectional dc-dc topology which is the most critical part for the power conversion systems such as solid-state transformers (SST). This paper focuses on analysis and design of high frequency ac inductors which are the power interfacing component in DAB converters or DAB’s derivative topologies for transferring energy between the primary and secondary sides. The DAB converter’s operation principles, and the corresponding voltage and current stresses over its ac inductor are analyzed. Hereby, six diverse winding arrangements are studied in order to find a design having the lowest ac resistance and core loss. Core loss is calculated by both GSE and iGSE methods, and then the results are compared under two operating conditions. Based upon the finite element method (FEM) simulation, winding losses are investigated. Finally, the case in which the core loss and the winding loss are almost equal is selected as the optimal one. The experimental results are presented to verify the validity of the analysis and design.
机译:双有源桥(DAB)转换器是一种隔离的双向dc-dc拓扑,对于诸如固态变压器(SST)之类的功率转换系统而言,这是最关键的部分。本文着重于高频交流电感器的分析和设计,高频交流电感器是DAB转换器或DAB的用于在一次侧和二次侧之间传输能量的派生拓扑的电源接口组件。分析了DAB转换器的工作原理,以及其交流电感器上相应的电压和电流应力。因此,研究了六种不同的绕组布置,以找到具有最低交流电阻和铁芯损耗的设计。通过GSE和iGSE方法都可以计算铁损,然后在两种操作条件下比较结果。基于有限元方法(FEM)仿真,研究了绕组损耗。最后,选择铁芯损耗和绕组损耗几乎相等的情况作为最佳选择。给出实验结果以验证分析和设计的有效性。

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