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Analysis and Design of a Push-Pull DCM Boost Power Factor Corrector

机译:推挽DCM升压功率因数校正的分析与设计

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A novel power factor corrector (PFC) composed of two-phase discontinuous conduction mode (DCM) boost PFCs and a coupled inductor is proposed in this paper. By coupling the two-phase boost inductors into the same magnetic core, both the circuit volume and the input ripple current are reduced. Therefore, the power factor (PF) value and the power density are improved. In addition, the output capacitor size can be smaller. The proposed topology distributes the input current and output current equally for the two phase modules. A cut-in-half duty cycle can decrease the conduction losses of the switches, and both the turns and diameters of the inductor windings, which help more to the reduction of the circuit volume. The advantages of a DCM boost PFC, such as natural zero-current-switching (ZCS) of the output diode, a natural PFC function, and the simplified EMI filter design, are maintained. Detailed analysis and design of the proposed topology, and the experimental results on a prototype with a 380-V output voltage and a 200-W output power are provided.
机译:本文提出了由两相不连续传导模式(DCM)升压PFC组成的新型功率因数校正器(PFC)和耦合电感。通过将双相升压电感器耦合到相同的磁芯中,电路容积和输入纹波电流都减小。因此,提高了功率因数(PF)值和功率密度。此外,输出电容大小可以较小。所提出的拓扑分布了两个相模块的平等的输入电流和输出电流。切割半占空比可以降低电感绕组的导通损耗,并且电感绕组的匝数和直径有助于减少电路容积。维持DCM升压PFC的优点,例如输出二极管的自然零电流切换(ZCS),天然PFC功能和简化的EMI滤波器设计。提供了所提出的拓扑的详细分析和设计,以及具有380V输出电压的原型和200-W输出功率的原型的实验结果。

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