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Analysis of Nonlinear Characteristics for a Three-Phase, Five-Limb Transformer Under DC Bias

机译:直流偏置下三相五臂变压器的非线性特性分析

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Monopole HVDC systems create dc current flow in the earth, which can cause the grounding location potential to rise relative to infinite spot and alters the working point of the transformer core. Because of the nonlinearity of the transformer core, the exciting current produces the amount of harmonics under dc bias. Past research has focused almost on simulation and testing dc bias problems of single-phase transformers. However, due to the complicated magnetic circuit structure in a three-phase five-limb transformer, there are some difficulties in studying its dc bias problem. In this paper, a new model and algorithm are proposed to find the nonlinear characteristics for the three-phase five-limb transformer under dc bias. Maxwell's equations are used to replace the magnetic circuit model of the transformer. By combining an electrical circuit with the nonlinear characteristic curve of the core, dc bias problems for a three-phase five-limb transformer are studied. Results show that the waveform of the no-load current and magnetic field intensity of the transformer are distorted under dc current inrush, and low-order harmonics increase with increasing dc current. Finally the interior and exterior nonlinear curve characteristics under dc bias are discussed.
机译:单极HVDC系统在地面上产生直流电流,这可能导致接地位置的电位相对于无限大的点上升,并改变了变压器铁芯的工作点。由于变压器铁心的非线性,励磁电流会在直流偏置下产生大量谐波。过去的研究几乎集中在模拟和测试单相变压器的直流偏置问题上。然而,由于三相五臂变压器中复杂的磁路结构,在研究其直流偏置问题上存在一些困难。本文提出了一种新的模型和算法来寻找三相五臂变压器在直流偏置下的非线性特性。麦克斯韦方程被用来代替变压器的磁路模型。通过将电路与铁芯的非线性特性曲线相结合,研究了三相五臂变压器的直流偏置问题。结果表明,在直流电涌入的情况下,变压器的空载电流和磁场强度的波形会发生畸变,并且随着直流电的增加,低次谐波会增加。最后讨论了直流偏置下的内部和外部非线性曲线特性。

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