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Optimal inductor winding geometries for minimizing winding loss in gapped inductor designs

机译:最佳电感绕组几何形状,可最大程度地减少间隙电感设计中的绕组损耗

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This paper summarizes geometrical effects on inductor winding loss based on fixed and variable wire diameter methods as well as core gap effects. Relevant AC and DC winding resistance equations are derived and an effective inductor design method is given to consider the ratio of alternating to direct current and ratio of skin depth to wire radius r. The core gap effect on the ac winding resistance can be minimized by increasing the distance far away from the gap, however the dc winding resistance will increase. Hence the optimal distance results in the minimum total winding resistance. Finally, a new concept of a two step core gap solution is verified by FEA simulation showing the further winding loss improvement by the smart design method of core gap geometries.
机译:本文基于固定和可变线径方法总结了对电感器绕组损耗的几何影响以及铁心间隙影响。推导了相关的交流和直流绕组电阻方程,并给出了一种有效的电感器设计方法来考虑交流电与直流电的比率以及趋肤深度与导线半径r的比率。可以通过增加远离间隙的距离来最大程度地减小铁芯间隙对交流绕组电阻的影响,但是直流绕组电阻会增加。因此,最佳距离导致最小的总绕组电阻。最后,通过FEA仿真验证了两步式铁心间隙解决方案的新概念,该结果表明通过铁心间隙几何形状的智能设计方法可以进一步改善绕组损耗。

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