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Design Optimization of a High-Power Transformer for Three-Phase Dual Active Bridge DC-DC Converter for MVDC Grids

机译:用于MVDC网格三相双极电桥DC-DC转换器大功率变压器的设计优化

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High-power DC-DC converters will be one of the essential technologies for future DC grids. A key component within this converter is the high power transformer operated at a medium frequency (MF) range. The design and optimization of this key component is presented in this paper. The transformer provides galvanic isolation from low voltage level to medium level or high voltage level and provides stepping up or down of the output (secondary) voltage. At first, a design of three-phase medium frequency transformer is developed. The designed transformer is then validated using two-dimensional (2D) transient finite element analysis (FEA) and performance under non-sinusoidal excitation is determined. After that, the optimization is carried out, for the set of selected design variables, in order to enhance the power density and efficiency of the targeted transformer. Finally, the performance of the full system, 3DAB converter, is determined using the parameters of optimized transformer. Also, two different rated input voltages for 4MW/lkHz three-phase transformer are considered and analysed in this paper.
机译:大功率DC-DC转换器将是未来直流网格的必备技术之一。该转换器内的关键部件是在介质频率(MF)范围内操作的高功率变压器。本文提出了该关键部件的设计和优化。变压器提供从低电压电平到中级或高电压电平的电流隔离,并提供输出(次级)电压的上升或下降。首先,开发了三相介质变压器的设计。然后使用二维(2D)瞬态有限元分析(FEA)验证设计的变压器,并且确定了非正弦激励下的性能。之后,对所选择的设计变量集进行优化,以提高目标变压器的功率密度和效率。最后,使用优化变压器的参数来确定完整系统3DAB转换器的性能。此外,在本文中考虑并分析了两个不同额定输入电压的4MW / LKHz三相变压器。

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