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Development of a nonlinear geometric transformer model based on an incremental circuit of its magnetic core

机译:基于磁芯增量电路的非线性几何变压器模型的开发

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In this paper, the investigation is focused on the topology-based geometric models of power transformers. These models take into account any type of core design, the geometrical characteristics of the magnetic core, and the nonlinear characteristics of the core material. These models differ from each other in the way in which the magnetic part is described. The methods, which have been proposed for the description of the magnetic part of a power transformer, are based on the conventional magnetic circuit of the core and present disadvantages. In this paper, a new method for the derivation of the differential equations of the magnetic core of the transformer is proposed by introducing a new auxiliary incremental circuit, more easily handled mathematically in antithesis to the conventional magnetic circuit that is used in the literature until now. Specifically, using the proposed circuit one can directly write the differential equations of the magnetic part of the transformer, the coupling between the windings of the transformer is easily calculated, the equations of the electric and the magnetic part are decoupled as well as the state equations of the electrical part can be written in standard form. The proposed method can be combined with any methodology presented in the literature on the core losses modeling without any restriction. The simulation results show forth that the proposed method of transformer modeling is suitable for transients and power quality studies. Moreover, the proposed method can be a useful tool on sensitivity analysis during the design stage of small and large power transformers as well.
机译:在本文中,研究集中在基于拓扑的电力变压器几何模型上。这些模型考虑了任何类型的磁芯设计,磁芯的几何特性以及磁芯材料的非线性特性。这些模型在描述磁性零件的方式上彼此不同。为了描述电力变压器的磁性部分而提出的方法是基于铁芯的常规磁路,并且存在缺点。在本文中,通过引入一种新的辅助增量电路,提出了一种推导变压器磁芯微分方程的新方法,该辅助增量电路与迄今为止在文献中使用的常规磁路相比,在数学上更易于处理。具体地,使用所提出的电路,可以直接写出变压器的磁性部分的微分方程,容易计算变压器的绕组之间的耦合,将电气和磁性部分的方程以及状态方程解耦。电气部分的零件可以标准格式书写。所提出的方法可以与关于磁芯损耗模型的文献中介绍的任何方法相结合,而没有任何限制。仿真结果表明,所提出的变压器建模方法适合于暂态和电能质量研究。而且,该方法在小型和大型电力变压器的设计阶段也可以作为灵敏度分析的有用工具。

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