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Improved low-frequency transformer model based on Jiles–Atherton hysteresis theory

机译:基于Jiles-Atherton磁滞理论的改进的低频变压器模型

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Transformers are the most widely used apparatus in power systems to transfer electrical energy from one side to another. Despite remarkable achievements in transformer modelling over the past few years, three-phase transformer modelling techniques have not progressed to that of their single-phase counterparts, mainly because of topological correctness of core and coil structure, complicated interaction between fluxes of the three iron core legs, and non-linear saturation of ferromagnetic material. An improved three-phase transformer model with extended inverse Jiles-Atherton (JA) hysteresis theory is proposed in this study. The extended inverse JA model with anisotropic anhysteretic magnetisation function is addressed, and the classical eddy-current-loss term and anomalous-loss term are directly incorporated into the original energy balance equation to represent the non-linearity and iron core losses rather than representing them with a parallel combination of resistances and saturable inductances (R//L model) as most previous studies have done. The results of inrush current case indicate that the proposed transformer model can predict the residual flux, include eddy-current-loss and anomalous-loss, and predict the inrush current peak values with relative error less than 6%.
机译:变压器是电力系统中使用最广泛的设备,用于将电能从一侧传递到另一侧。尽管过去几年在变压器建模方面取得了显著成就,但三相变压器建模技术仍未发展到单相变压器技术,这主要是由于铁芯和线圈结构的拓扑正确性以及三个铁芯磁通之间的复杂相互作用腿和铁磁材料的非线性饱和。本研究提出了一种改进的具有扩展的逆Jiles-Atherton(JA)磁滞理论的三相变压器模型。解决了具有各向异性磁滞磁化函数的扩展逆JA模型,并将经典的涡流损耗项和异常损耗项直接合并到原始能量平衡方程中,以表示非线性和铁芯损耗,而不是表示它们电阻和饱和电感的并联组合(R // L模型),就像大多数以前的研究一样。涌入电流情况的结果表明,所提出的变压器模型可以预测剩余磁通,包括涡流损耗和异常损耗,并且可以预测相对误差小于6%的涌入电流峰值。

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