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A comparison between three proposed bridgeless Cuk rectifiers and conventional topology for power factor correction

机译:三种拟议的无桥本CUK整流器与功率因数校正的传统拓扑比较

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Three new bridgeless single phase ac-dc power factor correction (PFC) rectifiers based on Cuk topology are proposed. The absence of an input diode bridge and the presence of only two semiconductor switches in the current flowing path during each switching cycle result in less conduction losses and an improved thermal management compared to the conventional Cuk PFC converter. The proposed topologies are designed to work in discontinuous conduction mode (DCM) to achieve almost unity power factor and low total harmonic distortion (THD) of input current. The DCM operation gives additional advantages such as: zero-current turn-on in the power switches, zero-current turn-off in the output diode, and reduces the complexity of the control circuitry. Performance comparisons between the proposed and conventional Cuk PFC rectifiers are performed based on circuit simulation. Experimental results for a 150W/48Vdc at 100 Vrms line voltage to evaluate the performance of the proposed bridgeless PFC rectifier are provided.
机译:提出了基于CUK拓扑的三种新的无灰度单相AC-DC功率因数校正(PFC)整流器。与传统CUK PFC转换器相比,在每个开关周期期间,在每个开关周期的电流流动路径中的缺失也仅在每个开关循环期间的电流流动路径中的两个半导体开关的存在导致了更少的传导损耗和改进的热管理。所提出的拓扑设计用于在不连续的传导模式(DCM)中工作,以实现输入电流的几乎统一功率因数和低总谐波失真(THD)。 DCM操作提供额外的优点,例如:电源开关中的零电流开启,输出二极管中的零电流关闭,并降低了控制电路的复杂性。所提出的和传统CUK PFC整流器之间的性能比较是基于电路仿真执行的。为100V RMS 线电压提供了150W / 48V DC 提供了用于评估所提出的无限PFC整流器的性能的实验结果。

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