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Large signal nonlinear model of anisotropic transformers for nonsinusoidal operation. I. lambda -i characteristics

机译:非正弦运行的各向异性变压器的大信号非线性模型。 I.lambda -i特性

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Single-phase, nonlinear transformers with anisotropic iron cores are modeled for nonsinusoidal (consisting of fundamental and low-order harmonics) terminal conditions based on design data through a quasi three-dimensional magnetic field analysis. This analysis includes the effects of the interlamination and butt-to-butt air gaps, the exchange of flux between any two neighboring anisotropic laminations, and the influences of the end windings. It is shown that the B-H characteristics of cross and with-grain iron core samples, obtained from Epstein measurements, are not valid for anisotropic iron cores. However, these characteristics can be used to compute, through a quasi-three-dimensional magnetic field analysis, appropriate B-H characteristics for anisotropic iron core samples. Based on such newly defined B-H characteristics for lambda -i functions representing the saturation-dependent magnetizing inductance as well as saturation-dependent leakage inductances are calculated from design data. Calculated and measured characteristics corroborate well for a 1 kVA single-phase transformer.
机译:基于设计数据,通过准三维磁场分析,对具有各向异性铁芯的单相非线性变压器进行了非正弦(基本和低阶谐波组成)终端条件建模。该分析包括层间和对接气隙的影响,任何两个相邻的各向异性层之间的磁通交换以及端部绕组的影响。结果表明,从爱泼斯坦测量得到的交叉和有颗粒铁心样品的B-H特性对于各向异性铁心无效。但是,这些特性可用于通过准三维磁场分析来计算各向异性铁芯样品的适当B-H特性。基于这种新定义的λ-iB-H特性,可以从设计数据中计算出代表饱和磁化电感和饱和漏磁电感的λ-i函数。 1 kVA单相变压器的计算和测量特性得到了很好的证实。

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