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Topology based magnetic model for steady-state and transient studies for three-phase core type transformers

机译:基于拓扑的磁模型用于三相铁心型变压器的稳态和瞬态研究

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摘要

Existing matrix models for transformers reproduce specified short-circuit tests, portraying leakage flux in air, but do not explicitly model the core. Therefore, a precise relation between core flux and air flux is not clearly established. Core representation is defined simply on the basis of a specified excitation current (positive- and zero-sequence), permitting linear magnetizing branches to be incorporated in the matrix. Nonlinear inductances are connected separately at winding terminals to introduce core nonlinearities, however these are not identified physically with individual core limbs, making precise accommodation of hysteresis, saturation and eddy current effects difficult. Published models based on the duality existing between magnetic and electric circuits identify a means for correctly interfacing core flux with air flux, permitting core nonlinearities to be incorporated on a physical basis. However practical application of these models has been hampered by a difficulty in deriving the required model parameters. A formulation is presented here to build a topological model based on normally available test data. Results of short-circuit tests are presented demonstrating that existing matrix models can introduce errors.
机译:现有的变压器矩阵模型可以再现指定的短路测试,描绘空气中的漏磁通量,但没有明确地对铁心建模。因此,磁芯通量和空气通量之间的精确关系还不清楚。磁芯表示仅根据指定的励磁电流(正序和零序)定义,允许将线性磁化分支合并到矩阵中。非线性电感在绕组端子处分别连接,以引入铁心非线性,但是,这些物理上无法通过单独的铁心肢体来识别,因此很难精确地调节磁滞,饱和度和涡流效应。基于磁路和电路之间存在的对偶关系的已发布模型确定了一种将磁芯磁通量与空气通量正确接口的方法,从而可以在物理基础上合并磁芯非线性。然而,这些模型的实际应用由于难以获得所需的模型参数而受到阻碍。本文提出了一种基于正常可用测试数据构建拓扑模型的公式。短路测试的结果表明现有的矩阵模型可能会引入误差。

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