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Three-Phase Single-Stage-Isolated Cuk-Based PFC Converter

机译:三相单级隔离基于Cuk的PFC转换器

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摘要

In this paper, analysis and design of a three-phase-isolated Cuk-based power factor correction (PFC) converter have been proposed. The proposed converter is operated in discontinuous output inductor current mode to achieve PFC at ac input. This avoids the inner current control loop which further eliminates the sensing of current. This makes the system more reliable and robust. The converter requires only one simple voltage control loop for output voltage regulation, and all the power switches are driven by the same gate signal which simplifies the gate driver circuit. The detailed operation of the converter and design calculations are presented. And also a small-signal model of the converter by using current injected equivalent circuit approach is presented to aid the controller design. The experimental results from a 2-kW laboratory prototype with 208-V line-to-line input voltage, 400-V output voltage are presented to confirm the operation of the proposed converter. An input power factor of 0.999, an input current total harmonic distortion of as low as 4.06%, and a high conversion efficiency of 95.1% are achieved from laboratory prototype.
机译:本文提出了一种基于三相隔离Cuk的功率因数校正(PFC)转换器的分析和设计。拟议的转换器在不连续输出电感器电流模式下工作,以在交流输入下实现PFC。这避免了内部电流控制环路,从而进一步消除了对电流的检测。这使系统更加可靠和强大。该转换器仅需一个简单的电压控制环路即可调节输出电压,并且所有电源开关均由相同的栅极信号驱动,从而简化了栅极驱动器电路。介绍了转换器的详细操作和设计计算。并提出了采用电流注入等效电路方法的转换器小信号模型,以帮助控制器设计。给出了2kW实验室原型的实验结果,该原型具有208V的线间输入电压,400V的输出电压,以确认所建议转换器的运行。通过实验室原型可以实现0.999的输入功率因数,低至4.06%的输入电流总谐波失真以及95.1%的高转换效率。

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