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Geometry optimization and characterization of three-phase medium frequency transformer for 10kVA Isolated DC-DC converter

机译:10KVA隔离直流转换器三相介质变压器的几何优化与表征

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Three-phase Dual Active Bridge converter is advisable for the High-power DC-DC conversion system. In the ac link, galvanically isolated transformer operated at a medium frequency range provides stepping up or down of the secondary bridge voltage. This paper provides a magnetic design optimization of the medium frequency transformer for maximizing its efficiency when excited by a non-sinusoidal waveform. In this paper, a mathematical design of a 10kVA non-sinusoidal transformer had been developed and validated using two-dimensional (2D) transient finite element analysis (FEA). The set of selected design variables is defined in order to enhance the power density and efficiency of the targeted transformer and an optimization is carried out. Finally, a 10kVA transformer is prototyped and the results of core losses for non-sinusoidal excitation is confirmed experimentally.
机译:三相双极电桥转换器是建议的高功率DC-DC转换系统。在AC链路中,在介质频率范围内操作的电流隔离变压器提供辅助桥电压的踩踏或下降。本文提供了介质变压器的磁性设计优化,用于在非正弦波形激发时最大化其效率。本文使用二维(2D)瞬态有限元分析(FEA)开发和验证了10KVA非正弦变压器的数学设计。定义了所选设计变量的集合,以提高目标变压器的功率密度和效率,并执行优化。最后,一个10kVA变压器是原型的,实验证实了非正弦激励的核心损失结果。

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