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Homogenization of Current Distribution in Parallel Connection of Interleaved Winding Layers of High-Frequency Transformers by Optimizing Distance between Winding Layers

机译:通过优化绕组层之间的距离,使高频变压器的交错绕组层并联时的电流分布均匀化

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摘要

The windings of high-frequency high-current transformers are required to reduce the proximity effect loss. Therefore, the Litz wire in parallel connection of interleaved winding layers is usually used as the winding of transformers. However, this can cause unbalanced AC current distribution, hindering effective reduction of the copper loss. This paper solves this problem by optimizing the distance between the winding layers based on the analytical principle called the extremum co-energy principle. The transformers used in the experiment to verify this method consists of three parallel-connected primary winding and two parallel-connected secondary winding, PQ core, thin polypropylene sheets for adjusting the distance between the winding layers. As a result, the copper loss can be recused by homogenizing the AC current distribution, and the effectiveness of this method has been clarified by experiments.
机译:需要高频大电流变压器的绕组以减少邻近效应的损失。因此,通常将交错的绕组层并联的李兹线用作变压器的绕组。但是,这可能会导致交流电流分布不平衡,从而阻碍了铜损的有效降低。本文基于称为极值协能原理的解析原理,通过优化绕组层之间的距离来解决此问题。实验中用于验证该方法的变压器包括三个并联的初级绕组和两个并联的次级绕组,PQ铁芯,用于调节绕组层之间距离的聚丙烯薄板。结果,可以通过使交流电流分布均匀化来消除铜损,并且该方法的有效性已经通过实验得到了证实。

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