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The Simulation of Copper Losses in Litz-Wire Windings Considering Air Gap Fringing Fields

机译:考虑气隙条纹田径绕组绕组铜损耗的仿真

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In this paper, a systematic procedure is presented, how to predict the AC resistance of litzwire windings considering air gap fringing fields. For this purpose, an equivalent complex permeability model is derived for hexagonally packed wires. It is shown, how finite element method (FEM) can be used to determine the real- as well as the imaginary part of the complex permeability with the copper filling factor as a parameter. A further FEM-model is deduced to describe the air gap fringing fields of gapped inductors. Accordingly, the exact proximity losses of the litz-wire winding are determined correctly and the AC resistance of practical inductors can be predicted over a wide frequency range with high accuracy. This offers the opportunity to optimize such components. Finally, the influence of various parameters on the copper losses is investigated and verified by means of experimental data drawn from impedance measurements.
机译:本文提出了一种系统的过程,如何考虑气隙排列领域的Litzwire绕组的AC电阻。为此目的,为六角包装线导出等效复杂渗透率模型。结果示出了,如何使用有限元方法(FEM)来确定与铜填充因子作为参数的复杂渗透性的虚构部分。推导出进一步的FEM模型来描述采用电感器的气隙流动领域。因此,正确确定LITZ线绕组的精确接近损耗,并且可以高精度地预测实际电感器的AC电阻。这提供了优化此类组件的机会。最后,通过从阻抗测量的实验数据研究和验证各种参数对铜损失的影响。

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