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Leakage inductance calculation of complex transformer constructions based on a simple two-coil inductor model

机译:基于简单两线圈电感模型的复杂变压器结构漏电感计算

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The paper presents a set of systematic matrices operation derived from Kirchhoff's Node Law with the base of a simple two-coil inductor model to deduce leakage inductances of windings seen from the schematic point of view. This method provides a platform in calculating leakage inductances of complex transformer structures. Its robustness covers different kinds of concentric winding structures where by getting accurate values of mutual inductances between all combinations of winding elements in a pair-wise sense, accurate leakage inductances can be deduced through the matrices operation without any computational simulations. In essence, such operation reduces lots of difficult magnetic problems within a transformer into determination of mutual and self inductances of winding elements through a simple two-coil inductor model. The approach has been implemented on PowerESIM [5] [6], a web base server type power converter design program, for reader to test.
机译:本文介绍了一组基于基尔霍夫节点定律的系统矩阵运算,其基础是一个简单的两线圈电感器模型,可以从示意图的角度推论出绕组的漏感。该方法为计算复杂变压器结构的漏感提供了一个平台。它的健壮性涵盖了不同种类的同心绕组结构,其中通过以成对方式获取绕组元件的所有组合之间的互感的准确值,可以通过矩阵运算来得出准确的漏感,而无需任何计算仿真。本质上,这种操作通过简单的两线圈电感器模型将变压器内的许多困难的磁性问题减少到确定绕组元件的互感和自感。该方法已在PowerESIM [5] [6](基于Web的服务器类型的电源转换器设计程序)上实现,供读者进行测试。

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