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High-Frequency Modeling of Common-Mode Chokes Based on the Identification of Frequency-Varying Parameters

机译:基于频率变化参数识别的共模扼流圈高频建模

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To overcome the disadvantage of impedance measurement which is influenced by parasitic parameters and non-ideal characters of conductor lines as well as cannot perform the frequency-varying parameters. This paper presents a high-frequency modeling method of common-mode chokes based on frequency-varying parameters. A high-frequency lumped parameter model was built, which included winding inductances, leakage inductances, parasitic capacitances between and in the windings, equivalent resistances of magnetic cores and copper losses. Using traditional least-square method, the forgetting factor and rectangular window was introduced to estimate the frequency-varying parameters. The mean square convergence of this method is proved. The modeling method proposed in this paper is proven accurately by comparing the experimental result with simulation result between 150 kHz–30 MHz. The restraining effects are best at the resonance frequency of the common-mode choke. In addition, an experiment is conducted to verify the conclusion by restraining the electromagnetic interference produced by a switching circuit.
机译:为了克服阻抗测量的缺点,阻抗测量受导线的寄生参数和非理想特性的影响,并且不能执行频率变化的参数。本文提出了一种基于频率变化参数的共模扼流圈高频建模方法。建立了高频集总参数模型,该模型包括绕组电感,漏感,绕组之间和绕组中的寄生电容,磁芯的等效电阻和铜损。利用传统的最小二乘法,引入遗忘因子和矩形窗来估计频率变化参数。证明了该方法的均方收敛性。通过将实验结果与150 kHz– 30 MHz之间的仿真结果进行比较,可以准确地证明本文提出的建模方法。在共模扼流圈的谐振频率处,抑制效果最佳。另外,通过抑制开关电路产生的电磁干扰,进行了实验以验证结论。

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