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Effective Permeability of Multi Air Gap Ferrite Core 3-Phase Medium Frequency Transformer in Isolated DC-DC Converters

机译:孤立的DC-DC转换器中多气隙铁氧体磁芯3相频率变压器的有效渗透性

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摘要

The magnetizing inductance of the medium frequency transformer (MFT) impacts the performance of the isolated dc-dc power converters. The ferrite material is considered for high power transformers but it requires an assembly of type “I” cores resulting in a multi air gap structure of the magnetic core. The authors claim that the multiple air gaps are randomly distributed and that the average air gap length is unpredictable at the industrial design stage. As a consequence, the required effective magnetic permeability and the magnetizing inductance are difficult to achieve within reasonable error margins. This article presents the measurements of the equivalent B(H) and the equivalent magnetic permeability of two three-phase MFT prototypes. The measured equivalent B(H) is used in an FEM simulation and compared against a no load test of a 100 kW isolated dc-dc converter showing a good fit within a 10% error. Further analysis leads to the demonstration that the equivalent magnetic permeability and the average air gap length are nonlinear functions of the number of air gaps. The proposed exponential scaling function enables rapid estimation of the magnetizing inductance based on the ferrite material datasheet only.
机译:介质变压器(MFT)的磁化电感会影响隔离的DC-DC功率转换器的性能。铁氧体材料被认为是高功率变压器,但它需要一个“I”芯的组装,导致磁芯的多气隙结构。作者声称,多个气隙随机分布,平均气隙长度在工业设计阶段是不可预测的。结果,在合理的误差边缘内难以实现所需的有效磁导率和磁化电感。本文呈现了等效B(H)和两种三相MFT原型的等效磁渗透率的测量。测量的等效B(h)用于有限元模拟,并与100kW隔离的DC-DC转换器的无负载测试进行比较,显示在10%误差内的良好拟合。进一步的分析导致示范性的等效磁导率和平均气隙长度是空气间隙数量的非线性函数。所提出的指数缩放功能能够基于仅基于铁氧体材料数据单的磁化电感来快速估计。

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