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首页> 外文期刊>Magnetics, IEEE Transactions on >Frequency-Dependent Coupled Field-Circuit Modeling of Armored Power Cables Using Finite Elements
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Frequency-Dependent Coupled Field-Circuit Modeling of Armored Power Cables Using Finite Elements

机译:基于有限元的铠装电力电缆频率相关耦合场电路建模

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This paper proposes a frequency-dependent electromagnetic model for armored power cables using Coupled circuit-field method. The model parameters were obtained by conducting a series of coupled field-circuit studies at different frequencies. The cable capacitance matrix is calculated using an electrostatic FE analysis. The frequency response of the cable was obtained by coupling the cable FE domain model and external electric circuits. This technique allows the physical representation of the nonlinear magnetization behavior of the cable shell as well as the frequency dependence of the cable parameters. This frequency response was then fitted with rational function approximation. The resulting vector fitting (VF) rational function was then represented by an equivalent electrical network. This model represents the cable's high-frequency dynamic behavior to account for overvoltages or spikes in the current waveforms.
机译:利用耦合电路场法,提出了铠装电缆的频率相关电磁模型。通过在不同频率下进行一系列耦合场电路研究获得模型参数。电缆电容矩阵使用静电有限元分析计算。电缆的频率响应是通过将电缆的FE域模型与外部电路耦合而获得的。这种技术可以物理表示电缆外壳的非线性磁化行为,以及电缆参数的频率依赖性。然后将此频率响应与有理函数逼近拟合。然后,用等效电网表示所得的矢量拟合(VF)有理函数。该模型表示电缆的高频动态行为,以解决电流波形中的过电压或尖峰。

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