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Research on a Novel Three-Phase Single-Stage Boost DCM PFC Topology and the Dead Zone of its Input Current

机译:新型三相单级提升DCM PFC拓扑研究及其输入电流死区

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A novel three-phase single-stage boost power factor correction (PFC) converter topology is presented. The converter operates in discontinuous conduction mode (DCM), and the PFC function is realized easily with the peak of input current following input voltage automatically which is the same as that of the traditional single switch three-phase boost PFC. Compared with the single switch three-phase PFC, it can realize electrical isolation between input and output sides, output DC voltage regulation and achieve zero-voltage-switching (ZVS) for the leading-leg switches, zero-current-switching (ZCS) for the lagging-leg switches. Due to the existing of on state voltage drop of the switches and diodes, there will be a dead zone of the input current when its voltage is lower than the voltage drop of the charging circuit which will be more serious as the input voltage decreases. The input current dead zone is analyzed in details, and a compensating circuit is proposed which is verified through experimental results.
机译:提出了一种新颖的三相单级升压功率因数校正(PFC)转换器拓扑。转换器以不连续的传导模式(DCM)运行,并且PFC功能通过自动输入电压的输入电压的峰值实现,其与传统单个开关三相升压PFC相同。与单次开关三相PFC相比,它可以实现输入和输出侧的电隔离,输出直流电压调节,实现前导腿部开关的零电压切换(ZVS),零电流切换(ZCS)用于滞后腿部开关。由于开关和二极管的状态电压降,当其电压低于充电电路的电压降低时,输入电流的死区是由于输入电压降低的充电电路的电压降低。详细分析输入电流死区,提出了通过实验结果验证的补偿电路。

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