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Modeling of Losses and Current Density Distribution in Conductors of a Large Air-Gap Transformer Using Homogenization and 3-D FEM

机译:利用均质化和3-D FEM对大型气隙变压器的导体损耗和电流密度分布进行建模

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摘要

A large air-gap transformer has a strongly inductive behavior, and leakage flux is very important. In some cases, in order to improve the coupling coefficient of a large air-gap transformer, it is interesting to have a low turn number and a large winding window. As a result, coils are composed of a large number of conductors in parallel. Moreover, leakage flux is very important in winding windows. Therefore, losses and current density distribution in coils are not uniform. This paper presents a study of current density distribution and losses in a large air-gap transformer composed of two E cores and two windings using homogenization and 3-D FEM. Moreover, solutions to improve current density distribution are proposed.
机译:大型气隙变压器具有很强的电感特性,漏磁通非常重要。在某些情况下,为了提高大型气隙变压器的耦合系数,有趣的是具有低匝数和较大的绕组窗口。结果,线圈由大量平行的导体组成。此外,漏磁通在绕组窗口中非常重要。因此,线圈中的损耗和电流密度分布不​​均匀。本文通过均质化和3-D FEM,对由两个E磁芯和两个绕组组成的大型气隙变压器的电流密度分布和损耗进行了研究。此外,提出了改善电流密度分布的解决方案。

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