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An Investigation of Ferrite and Nanocrystalline Core Materials for Medium-Frequency Power Transformers

机译:中频电力变压器铁氧体和纳米晶核材料的研究

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摘要

In this study, two transformers are designed using the ferrite N87 and the nanocrystalline core materials for the same power level and operating frequency. The operating frequency is defined as 10 kHz, which is suitable for both materials. Modeling and simulation studies have been performed with the same finite element analysis software and the obtained results have been reported. The nanocrystalline and the ferrite N87 core materials have been compared according to both electrical and mechanical parameters. In these comparisons, many features such as core and winding losses, flux distributions, leakage flux, efficiency, and both electrical and mechanical performance have been reported comparatively in the case of rectangular waveform excitation of the transformer. Obtained results show that the weight and the volume of the transformer are reduced and more compact transformer is designed by using the nanocrystalline core material. In addition, besides the core loss, winding losses are also reduced in this design.
机译:在这项研究中,使用铁氧体N87和纳米晶核材料设计了两个具有相同功率水平和工作频率的变压器。工作频率定义为10 kHz,适用于两种材料。使用相同的有限元分析软件进行了建模和仿真研究,并报告了获得的结果。根据电学和机械参数比较了纳米晶和铁氧体N87芯材。在这些比较中,在变压器矩形波形激励的情况下,已经比较多地报告了许多特性,例如铁心和绕组损耗,磁通分布,漏磁通,效率以及电气和机械性能。所得结果表明,减小了变压器的重量和体积,并使用纳米晶核材料设计了更紧凑的变压器。另外,除了铁损之外,该设计还减少了绕组损耗。

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