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Minimizing Effect of Input Filter Capacitor in a Digital Boundary Conduction Mode Power Factor Corrector Based on Time-Domain Analysis

机译:基于时域分析的数字边界传导模式功率因数校正中输入滤波电容的最小化影响

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摘要

Conventional phase leading input current (PLIC) compensation techniques have focused on a continuous conduction mode (CCM) boost power factor corrector (PFC). In precedent studies, the causes of the PLIC have been investigated by analyzing the current control loop and the input impedance of a boost PFC. However, in a boundary conduction mode (BCM) boost PFC, the current flowing through the input filter capacitor becomes a main cause due to its large ripple current. Despite that, there has not been any effort to compensate the current in the input filter capacitor (IFC) in a BCM boost PFC. In this paper, a new digital control method is proposed to compensate PLIC in a BCM boost PFC, by minimizing the effect of the IFC. The proposed method uses only the derivative of the input voltage, without any additional component. Also, the proposed method improves the displacement factor, but does not affect the distortion factor, resulting in a high power quality in the entire input and output conditions. The derivation of the proposed method is presented based on time-domain analysis, and the effectiveness of the proposed method is experimentally verified with a 60-Hz, 90–230 input and 395-V/0.5-A output prototype.
机译:常规的相位超前输入电流(PLIC)补偿技术集中于连续传导模式(CCM)升压功率因数校正器(PFC)。在先前的研究中,已经通过分析电流控制环路和升压PFC的输入阻抗来研究PLIC的原因。然而,在边界传导模式(BCM)升压PFC中,流过输入滤波电容器的电流由于其较大的纹波电流而成为主要原因。尽管如此,仍没有任何努力来补偿BCM升压PFC中输入滤波电容器(IFC)中的电流。本文提出了一种新的数字控制方法,通过最小化IFC的影响来补偿BCM升压PFC中的PLIC。所提出的方法仅使用输入电压的导数,而没有任何附加分量。而且,所提出的方法改善了位移因数,但不影响失真因数,从而在整个输入和输出条件下都具有较高的电能质量。在时域分析的基础上提出了该方法的推导,并通过60Hz,90-230输入和395V / 0.5-A输出原型通过实验验证了该方法的有效性。

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