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A systematic method for the development of a three-phase transformer non-linear model

机译:开发三相变压器非线性模型的系统方法

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In this work, a novel three-phase transformer non-linear model is developed. The proposed model takes into account the magnetic core topology and the windings connections. The non-linear characteristic curve of the core material is introduced by its magnetization curve or by its hysteresis loop using the mathematical hysteresis model proposed by Tellinen or the macroscopic hysteresis model proposed by Jiles-Atherton. The eddy currents effects are included through non-linear resistors using Bertotti's work. The proposed model presents several advantages. An incremental linear circuit, having the same topology with the magnetic circuit of the core, is used in order to directly write the differential equations of the magnetic part of the transformer. The matrix L_d that describes the coupling between the windings of the transformer is systematically derived. The electrical equations of the transformer can be easily written for any possible connection of the primary and secondary windings using the unconnected windings equations and transformation matrices. The proposed methods for the calculation of the coupling between the windings, the representation of the eddy currents and the inclusion of the core material characteristic curve can be used to develop a transformer model appropriate for the EMTP/ATP-type programs.
机译:在这项工作中,开发了一种新颖的三相变压器非线性模型。所提出的模型考虑了磁芯拓扑和绕组连接。使用Tellinen提出的数学磁滞模型或Jiles-Atherton提出的宏观磁滞模型,通过磁化曲线或磁滞回线介绍芯材的非线性特性曲线。使用Bertotti的工作,通过非线性电阻器可以包括涡流效应。所提出的模型具有几个优点。为了直接写出变压器的磁性部分的微分方程,使用了与铁芯的磁性电路具有相同拓扑的增量线性电路。系统地得出描述变压器绕组之间的耦合的矩阵L_d。使用未连接的绕组方程式和变换矩阵,可以很容易地将变压器的电气方程式写成初级绕组和次级绕组的任何可能连接。所提出的用于计算绕组之间的耦合,涡流的表示以及包括芯材料特性曲线的方法可用于开发适合EMTP / ATP型程序的变压器模型。

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