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Physics-Based High-Frequency Transformer Modeling by Finite Elements

机译:基于物理的高频变压器有限元建模

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摘要

This paper proposes a computational high-frequency transformer model. The model parameters are obtained by using coupled-circuit-finite-element (FE) nonlinear analysis. The frequency response of the transformer was obtained by coupling the transformer FE model and external electric circuits. This technique would allow the physical representation of the nonlinear magnetization behavior of the transformer as well as the strong frequency dependence of the transformer parameters. The self capacitance of each conductor and the mutual capacitances between the turns were calculated by an electrostatic FE analysis. The capacitance order was then reduced to a lower order by shifting the capacitances connected to internal nodes (windings) to the external ones (coil nodes). The resulting reduced capacitances, along with the inductances and resistances, were then used in the circuit domain of the coupled circuit-FE analysis. The transformer frequency response was then obtained from FE analysis. This response was then fitted with rational function approximation. This rational function approximation is then used to construct a frequency-dependent branch (FDB) which is connected in parallel with the nominal frequency transformer model. The FDB branch represents the transformer high-frequency behavior over a wide frequency range. The implementation is performed on a 125-kVA transformer. The developed model terminal behavior was tested under different operating conditions. This includes different switching frequencies and connecting cable length.
机译:本文提出了一种计算高频变压器模型。通过使用耦合电路有限元(FE)非线性分析获得模型参数。变压器的频率响应是通过将变压器FE模型与外部电路耦合而获得的。这种技术将允许变压器的非线性磁化行为的物理表示以及变压器参数的强烈频率依赖性。通过静电有限元分析计算出每个导体的自电容和匝之间的互电容。然后,通过将连接到内部节点(绕组)的电容转移到外部节点(线圈节点),将电容阶数降低到较低阶。然后将所得的减小的电容以及电感和电阻用于耦合电路FE分析的电路域中。然后从有限元分析中获得变压器的频率响应。然后将此响应与有理函数逼近拟合。然后,使用这种有理函数逼近来构建与频率相关的分支(FDB),该分支与标称频率转换器模型并联。 FDB分支代表了宽频率范围内的变压器高频行为。该实现在125 kVA变压器上执行。在不同的操作条件下测试了开发的模型终端行为。这包括不同的开关频率和连接电缆的长度。

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