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A novel control scheme of DCM boost PFC converter

机译:DCM Boost PFC变换器的新型控制方案

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Discontinuous current mode (DCM) boost power factor correction (PFC) converter features zero-current turn-on for the switch, no reverse recovery in diode, constant frequency operation. However, when the duty cycle is constant in a line cycle, the input current contains rich 3rd harmonic which has a phase difference of π with fundamental component. The harmonic results in not only low PF but also larger peak and rms current values of the main power components, which leads to higher conduction and switching turn-off loss. A variable duty cycle control is proposed in this paper so as to enable that the input current contains only 3rd harmonic which is in phase with fundamental component while remaining the same PF at a certain input voltage, comparing with that of constant duty cycle control. A method of fitting the duty cycle is further proposed for simplifying the circuit implementation. The efficiency is improved as the critical inductance can be increased and the peak and rms current value is therefore decreased. The proposed method also achieves the output voltage ripple or the output storage capacitance reduction. The experimental results from a prototype of 120W are given to verify the effectiveness of the proposed method.
机译:不连续电流模式(DCM)升压功率因数校正(PFC)转换器具有开关的零电流导通,二极管无反向恢复,恒定频率工作的特点。但是,当占空比在线路周期中恒定时,输入电流会包含丰富的三次谐波,该三次谐波与基本成分的相位差为π。谐波不仅会导致PF低,还会导致主要功率分量的峰值和均方根电流值变大,从而导致更高的导通和开关关断损耗。与恒定占空比控制相比,本文提出了一种可变占空比控制,以使输入电流仅包含与基波分量同相的三次谐波,同时在一定输入电压下保持相同的PF。为了简化电路实现,还提出了一种适合占空比的方法。由于可以增加临界电感并因此降低了峰值和均方根电流值,因此提高了效率。所提出的方法还实现了输出电压纹波或输出存储电容的减小。给出了120W原型的实验结果,以验证该方法的有效性。

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