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Digital control of single-phase power factor preregulators suitable for smart-power integration

机译:适用于智能电源集成的单相功率因数预调节器的数字控制

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This paper proposes a fully digital control of boost power factor preregulators (PFPs) with input voltage estimation that is suitable for smart-power integration. The proposed solution features a minimum pin count by avoiding direct sensing of the input voltage for the construction of the internal current reference signal and by sensing the output voltage through a direct sampling of the voltage across the power switch during its off interval at the line voltage peak. The control algorithm requires the estimation of the rectified input voltage, that is simply done by exploiting the integral part of the current loop PI regulator, and a PLL (phase-looked-loop) synchronization with the estimated line frequency for sampling the output voltage and rejecting the low-frequency output voltage ripple. The provisions needed to ensure correct output voltage sensing, even during transient and light-load conditions, are also discussed. Experimental results on a single-phase boost PFP show the properties of the proposed approach.
机译:本文提出了具有输入电压估计的升压功率因数预调节器(PFP)的全数字控制,适用于智能功率集成。通过避免在内部电压参考信号的构建中直接检测输入电压,以及在电源电压处于断开状态时,通过对电源开关两端的电压进行直接采样来检测输出电压,所提出的解决方案具有最小的引脚数顶峰。该控制算法需要估算整流后的输入电压,只需利用电流环路PI调节器的集成部分即可完成估算,并通过PLL(相环)同步与估算的线路频率对输出电压和输出进行采样。抑制低频输出电压纹波。还讨论了即使在瞬态和轻载条件下也需要确保正确的输出电压感测所需的规定。在单相升压PFP上的实验结果表明了该方法的特性。

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