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Resistance Variations in High-Frequency Inductors Considering Induced Fields Among Conductors

机译:考虑导体中的诱导场的高频电感器的电阻变化

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摘要

In the high-frequency alternating current (ac) fields, both skin effect and proximity effect account for the significant part of losses in an inductor. In particular, serious losses between multiple wires occur due to the proximity effect. A stranded wire has two or more strands with twisted structure so that the analysis of stranded wire-wound inductors requires lots of computational time for detailed discretization in finite element analysis (FEA). The analytical method can be alternatively used to help achieve fast (real-time) estimation by reducing the complexity of the original model. However, the proximity effect cannot be accurately predicted due to induced fields by eddy current from adjacent conductors (strands and wires). In this article, induced fields among adjacent conductors are discussed for the accurate analytical calculation. The concepts of a complex permeability and homogenization can help improve the estimation of frequency-dependent resistance in an inductor. The proposed estimation is verified and compared with the computed value by FEA and measurement data with a spiral inductor.
机译:在高频交流电流(AC)字段中,皮肤效应和接近效果占电感中损耗的重要部分。特别地,由于近似效应,多根线之间发生严重损失。绞合线具有两个或更多个具有扭曲结构的股线,使得绞合线缠绕电感器的分析需要大量的计算时间,以便有限元分析(FEA)中的详细离散化。分析方法可以替代地用于通过降低原始模型的复杂性来帮助实现快速(实时)估计。然而,由于来自相邻导体的涡流(股线和线)的涡流,不能准确地预测接近效果。在本文中,讨论了相邻导体之间的诱导字段,用于准确分析计算。复杂渗透性和均匀化的概念可以有助于改善电感器中依赖于频率依赖性电阻的概念。验证所提出的估计,并通过FEA和具有螺旋电感的测量数据进行验证并与计算值进行比较。

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