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Essential-coupling-path models for non-contact EMI in switching power converters using lumped circuit elements

机译:使用集总电路元件的开关电源转换器中非接触式EMI的基本耦合路径模型

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摘要

This paper proposes a simple lumped circuit modeling approach for describing noncontact EMI coupling mechanisms in switching power converters. The resulting model assumes a minimum number of noise sources and contains essential coupling paths that allow easy physical interpretations. Essentially, all capacitive couplings are represented by an equivalent noise voltage source and six coupling impedances, whereas all inductive couplings are represented by an equivalent noise current source and three coupling impedances. The resulting coupled noise appears as currents flowing into the terminals of the Line-Impedance-Stabilization-Network (LISN). The equivalent voltage source can be conveniently approximated as the switching-node-to-zero voltage, which is typically a rectangular pulse of a few hundred volts. The equivalent current source can be modeled as the current flowing around a loop containing the equivalent voltage source and parasitics such as winding capacitance of the power transformer, the snubber capacitance and connection inductances. Also, the coupling impedances can be estimated by making simplifying assumptions about the geometry of the components and tracks, or by direct measurements. Simulations and experiments verify how inductive and capacitive couplings through each path may produce substantial EMI measured by the LISN. Being based on a lumped circuit approach, the proposed model is easy to apply in practice for understanding, diagnosing and approximating EMI behaviors.
机译:本文提出了一种简单的集总电路建模方法,用于描述开关电源转换器中的非接触式EMI耦合机制。生成的模型假设噪声源的数量最少,并且包含基本的耦合路径,可以轻松地进行物理解释。本质上,所有电容性耦合均由等效噪声电压源和六个耦合阻抗表示,而所有电感性耦合均由等效噪声电流源和三个耦合阻抗表示。当电流流入线路阻抗稳定网络(LISN)的端子时,产生的耦合噪声就会出现。等效电压源可以方便地近似为开关节点至零电压,该电压通常为几百伏的矩形脉冲。可以将等效电流源建模为围绕包含等效电压源和寄生效应(如电源变压器的绕组电容,缓冲电容和连接电感)的环路流动的电流。同样,可以通过简化有关组件和走线几何形状的假设或通过直接测量来估算耦合阻抗。仿真和实验验证了通过每条路径的电感性和电容性耦合如何产生可通过LISN测量的实质性EMI。基于集总电路方法,所提出的模型易于在实践中应用于理解,诊断和近似EMI行为。

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