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Obtaining a frequency-dependent and distributed-effects model of magnetic components from actual measurements

机译:从实际测量中获得磁性组件的频率相关和分布效应模型

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摘要

The behavior of the magnetic components in high frequency switched power supplies depends significantly on the working frequency because of distributed magnetic and electrical field effects. Measurement equipment such as an impedance analyzer usually offers simple equivalent models that allow characterization of the frequency behavior of some magnetic components. However, it is useful to have a procedure to generate more sophisticated models for all magnetic components, including coupled inductors and multiwinding transformers in order to characterize the frequency behavior more accurately. This paper presents a procedure to obtain the parameters of a model of magnetic components that has both frequency dependence and distributed effects. The values of the parameters of this model are obtained from actual measurements. The model is suitable for any waveforms applied to the magnetic component and can separate the working conditions of the different windings. The main drawbacks of this procedure are that it is necessary to have the magnetic component already built and to have available a measurement apparatus such as an impedance analyzer.
机译:由于分布的磁场和电场效应,高频开关电源中磁性组件的行为在很大程度上取决于工作频率。诸如阻抗分析仪之类的测量设备通常会提供简单的等效模型,从而可以表征某些磁性元件的频率特性。但是,有一个过程可以为所有磁性组件(包括耦合电感器和多绕组变压器)生成更复杂的模型,以便更准确地表征频率行为。本文提出了一种获得具有频率依赖性和分布效应的磁性元件模型参数的程序。该模型的参数值是从实际测量中获得的。该模型适用于施加到磁性元件的任何波形,并且可以分离不同绕组的工作条件。该过程的主要缺点是必须已经构造了磁性部件,并且需要使用诸如阻抗分析仪的测量设备。

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