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Optimal Switching Frequency Variation Range Control for Critical Conduction Mode Boost Power Factor Correction Converter

机译:临界传导模式最佳开关频率变化控制升压功率因数校正转换器

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Critical conduction mode boost power factor (PF) correction converter is widely used in low-to-medium power applications for its advantages of high PF, zerocurrent turn-ON of the switch, and no reverse recovery in diode. Nevertheless, the switching frequency varies continually with the input voltage phase angle with traditional constant ON-time control. This makes the electromagnetic interference (EMI) spectra display great differences and complicates the design of EMI filter. An optimal switching frequency variation range control strategy is proposed in this article. The optimal harmonics amounts for the lowest switching frequency variation range without and with a limited PF are both figured out. In addition, a lower output voltage ripple is obtained. A prototype has been built and tested in the lab to demonstrate the validity of the theoretical analysis.
机译:临界传导模式升压功率因数(PF)校正转换器广泛用于低至中型电源应用,可用于其高PF,Zerocurrent开启开关的优点,并且在二极管中没有反向恢复。尽管如此,开关频率随着传统恒定导通控制的输入电压相位角而不断变化。这使得电磁干扰(EMI)光谱显示出很大的差异并使EMI滤波器的设计复杂化。本文提出了一种最佳的开关频率变化范围控制策略。最低开关频率变化范围的最佳谐波量均为有限的PF。另外,获得较低的输出电压纹波。在实验室中建立并测试了原型,以证明理论分析的有效性。

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