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Double-Ladder Circuit Model of Transformer Winding for Frequency Response Analysis Considering Frequency-Dependent Losses

机译:考虑频率相关损耗的变压器绕组双阶梯电路模型用于频率响应分析

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摘要

It is well known that power transformers inevitably suffer the impacts of short-circuit electromagnetic forces in service. For precise diagnosis investigation of winding mechanical deformation, this paper presents a double-ladder circuit model of transformer winding with lumped parameters for frequency response analysis. This advanced model includes the axial and radial ladder networks with regard to the winding disks and the eddy current paths of the magnetic core, respectively. In the radial ladder network, the nonlinear behavior of frequency-dependent parameters and core loss are considered. Relevant equivalent parameters in this double-ladder circuit model are calculated using the 3-D finite-element method. The energy balance method is applied to obtain the frequency-dependent inductances and resistances. In order to verify the effectiveness of this model, the frequency responses of voltage ratio at a wide frequency range from a few tens of hertz up to megahertz are simulated and measured.
机译:众所周知,电力变压器在使用中不可避免地会受到短路电磁力的影响。为了精确诊断绕组的机械变形,本文提出了一种具有集总参数的变压器绕组双阶梯电路模型,用于频率响应分析。这个高级模型包括分别关于磁芯的绕组盘和涡流路径的轴向和径向梯形网络。在径向梯形网络中,考虑了频率相关参数和铁心损耗的非线性行为。使用3-D有限元方法计算该双梯形电路模型中的相关等效参数。应用能量平衡方法来获得频率相关的电感和电阻。为了验证该模型的有效性,模拟并测量了从几十赫兹到几兆赫兹的宽频率范围内电压比的频率响应。

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