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首页> 外文期刊>IEEE Transactions on Power Electronics >Low-Frequency Input Impedance Modeling of Boost Single-Phase PFC Converters
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Low-Frequency Input Impedance Modeling of Boost Single-Phase PFC Converters

机译:Boost单相PFC转换器的低频输入阻抗建模

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摘要

Input impedance models of boost single-phase power factor correction converters suitable for predicting small-signal input characteristics below the line fundamental frequency are presented in this paper. Existing low-frequency input impedance models based on double averaging predicts input current responses to perturbations in the amplitude of the input voltage. It is shown in this paper that such impedance models do not conform to the standard definition of impedance, and, hence, cannot be used in conjunction with the source output impedance to study system interactions based on the Nyquist stability criterion, as traditionally done in dc power systems. A new input impedance model that overcomes this problem is developed by using the method of harmonic balance. The new model conforms to the standard definition of impedance and predicts input current responses to superimposed input harmonic voltages. Numerical simulation and experimental results are presented to validate the proposed model. Mathematical relationship between the two types of models are also presented.
机译:本文提出了适用于预测线路基本频率以下的小信号输入特性的升压单相功率因数校正转换器的输入阻抗模型。基于双平均的现有低频输入阻抗模型可预测输入电流对输入电压幅度扰动的响应。本文表明,此类阻抗模型不符合阻抗的标准定义,因此不能与源输出阻抗结合使用,从而无法像传统上在直流电中那样基于奈奎斯特稳定性准则来研究系统相互作用。电力系统。通过使用谐波平衡的方法,开发了克服该问题的新输入阻抗模型。新模型符合阻抗的标准定义,并预测输入电流对叠加的输入谐波电压的响应。通过数值模拟和实验结果验证了该模型的有效性。还介绍了两种模型之间的数学关系。

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