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Power Transformer Design Using Magnetic Circuit Theory and Finite Element Analysis - A Comparison of Techniques

机译:基于磁路理论和有限元分析的电力变压器设计-技术比较

摘要

This paper summarises a reverse method of transformer design where the constructiondetails of the transformer are directly specified and are used to determine the device performance and ratings. Two magnetic models are presented for the inductive-reactance components of the Steinmetz ‘exact’ transformer equivalent circuit. The first model, based on magnetic circuit theory, is frequently taught in undergraduate power system courses at universities. The second model is based on magneto-static finite element analysis. The reverse design method is used to design two sample high voltage transformers. The performance of the two magnetic models is compared to the measured performance of the as-built transformers. The magnetic model based on finite element analysis is shown to be more accurate than the model based on magnetic circuit theory, though at the expense of complexity of programming.
机译:本文总结了一种变压器设计的反向方法,其中直接指定了变压器的构造细节,并用于确定设备性能和额定值。针对Steinmetz“精确”变压器等效电路的感应电抗组件,提出了两种磁性模型。基于磁路理论的第一个模型经常在大学的电力系统课程中教授。第二个模型基于静磁有限元分析。反向设计方法用于设计两个样本高压变压器。将两个磁性模型的性能与已建成变压器的测量性能进行比较。事实证明,基于有限元分析的磁模型比基于磁路理论的磁模型更准确,尽管以编程的复杂性为代价。

著录项

  • 作者

    Bell S.C.; Bodger P.S.;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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