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Magnetic Field Analysis for HF Transformers with Coaxial Winding Arrangements

机译:同轴绕组布置的HF变压器的磁场分析

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Magnetic analysis for high frequency (HF) transformers is an important step in designing the magnetic parts of the isolated DC-DC converters. A robust and effective magnetic design help to reduce the parasitic values such as leakage inductance and consequently increase the efficiency and improve the performance of the converters. In this paper, two different HF transformers with different winding arrangements are designed and analyzed. Coaxial windings are used for the transformers in order for obtaining a better magnetic coupling and lower leakage inductance. The results are compared to the regular windings and this comparison showed the effectiveness of the coaxial windings. The design procedure and results are conducted for a power rating of 2kW and a voltage level of 400V/400V at the frequency of 5 kHz. The design method and the analysis procedure used in this paper can later be used for designing optimal isolated DC-DC converters or integrating parasitic parameters in resonant tank circuits for achieving zero voltage switching (ZVS) and zero current switching (ZCS). Especially for converters including silicon carbide (SiC) and gallium nitride (GaN) switches. For analyzing the results and magnetic fields, finite element method (FEM) is used as a numerical strategy.
机译:高频(HF)变压器的磁性分析是设计隔离式DC-DC转换器磁性部分的重要步骤。稳健而有效的磁性设计有助于减少诸如漏感之类的寄生值,从而提高效率并改善转换器的性能。本文设计并分析了两种具有不同绕组布置的高频变压器。同轴绕组用于变压器,以便获得更好的磁耦合和更低的漏感。将结果与常规绕组进行比较,该比较显示了同轴绕组的有效性。设计程序和结果是针对额定功率为2kW,频率为5 kHz的电压电平为400V / 400V进行的。本文中使用的设计方法和分析过程可稍后用于设计最佳隔离式DC-DC转换器或在谐振回路中集成寄生参数,以实现零电压开关(ZVS)和零电流开关(ZCS)。特别适用于包括碳化硅(SiC)和氮化镓(GaN)开关的转换器。为了分析结果和磁场,将有限元方法(FEM)用作数值策略。

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