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High Frequency Transformer Model Based on Duality Principle and Finite Element Method Analysis

机译:基于二元原理和有限元方法分析的高频变压器模型

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This paper deals with a new High Frequency Transformer Model HFTM, taking into account magnetic core and fractionated winding. For electromagnetic transient phenomena, capacitive effects are considered by a series of capacitors among different transformer elements. This model has been tested using excitation by ramp or surge overvoltage applied to the windings terminal. Leakage impedances, magnetizing branches, zero-sequences (homopolar) fluxes and losses in windings have been developed using duality principle. In this model, electrical parameters are depending on frequency due to skin and proximity effects. Parallel Foster circuits have been fitted to represent in the time domain the damping produced by eddy currents in the windings and the iron core. The lumped parameters of these equivalents circuits have been established from inductive and resistive parameters deduced from Finite Element Method (FEM) simulation results of magnetic field distribution in winding and magnetic core for multiples frequencies up to 1MHz. The analytics HF formulas for one lamination or turn have been exploited. The Foster network elements chosen with five terms should be connected in parallel with the nonlinear magnetizing branch representing iron saturation in rated frequency. The obtained results show a satisfactory agreement with FEM analysis results. Complete model of 10kVA three-phase three-legged transformer has been achieved based on duality principle and taking into account winding resistance and core frequency dependence as well as capacitive effects. The model has been tested to simulate voltage propagation in windings and neutral current response subject to surge overvoltage.
机译:本文涉及新的高频变压器模型HFTM,考虑到磁芯和分馏绕组。对于电磁瞬态现象,在不同变压器元件中的一系列电容器考虑电容效果。通过延伸到绕组端子的斜坡或浪涌过电压,使用激励测试了该模型。利用二元原理,开发了漏电阻抗,磁化分支,零序(均色节)通量和绕组中的损耗。在该模型中,电气参数根据皮肤和邻近效应而取决于频率。并联促进电路已经安装在时域中,在绕组和铁芯中由涡流产生的阻尼。这些等同物电路的集成参数已经从来自有限元方法(FEM)仿真结果推导的电感和电阻参数建立了绕组和磁芯的磁场分布的结果,用于多达1MHz的频率。已经利用了一个层压或转弯的分析HF公式。选择有五个术语的寄存网络元件应与非线性磁化分支并联连接,该分支代表额定频率的铁饱和度。所获得的结果表明,与有限元分析结果达成令人满意的协议。基于二元原理实现了10kVA三相三相变压器的完整型号,并考虑了绕组阻力和核心频率依赖性以及电容效应。该模型已被测试以模拟绕组和中性电流响应的电压传播,但受激增过电压。

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