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A New Digital Control Strategy of Boost PFC at High-Line Light-Load Condition

机译:高线灯负荷条件下升压PFC的新数字控制策略

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摘要

The power factor correction (PFC) converter is commonly used in many applications nowadays. For high power applications, boost PFC converter operated in continuous conduction mode is usually employed. However, at high-line light-load condition, the converter operates in discontinuous conduction mode. This leads to erroneous input current sampling which results in low power factor (PF) and high total harmonic distortion (THD). Moreover, the effect of EMI filter capacitor causes the displacement between the input current and input voltage. This paper proposes a digital control method to improve PF and reduce THD by using the current sample correction algorithm, duty ratio feed forward for current controller and EMI filter capacitance current injection algorithm. The increase of PF and reduction of THD are demonstrated by experiments on a 400W boost PFC converter.
机译:功率因数校正(PFC)转换器现在通常在许多应用中使用。对于高功率应用,通常采用在连续导通模式下操作的升压PFC转换器。然而,在高线路光负载条件下,转换器以不连续的传导模式操作。这导致错误的输入电流采样,从而导致低功率因数(PF)和高总谐波失真(THD)。此外,EMI滤波电容器的效果导致输入电流和输入电压之间的位移。本文提出了一种数字控制方法来改善PF和通过使用电流采样校正算法,占空比馈电和EMI滤波电容电流注入算法的占空比馈电。通过在400W升压PFC转换器上的实验证明了PF和THD减少的增加。

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