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首页> 外文期刊>Journal of Semiconductors >A Feedforward Compensation Design in Critical Conduction mode Boost Power Factor Correction for Low-power low Totalharmonic Distortion
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A Feedforward Compensation Design in Critical Conduction mode Boost Power Factor Correction for Low-power low Totalharmonic Distortion

机译:临界传导模式下的前馈补偿设计,提高了低功率,低总谐波失真的功率因数校正

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摘要

For low-power low total harmonic distortion (THD), based on the CSMC 0.5 μm BCD process, a novel boost power factor correction (PFC) converter in critical conduction mode is discussed and analyzed. Feedforward compensation design is introduced in order to increase the PWM duty cycle and supply more conversion energy near the input voltage zero-crossing points, thus regulating the inductor current of the PFC converter and compensating the system loop gain change with ac line voltage. Both theoretical and practical results reveal that the proposed PFC converter with feedforward compensation cell has better power factor and THD performance, and is suitable for low-power low THD design applications. The experimental THD of the boost PFC converter is 4.5%, the start-up current is 54 μA, the stable operating current is 3.85 mA, the power factor is 0.998 and the efficiency is 95.2%.
机译:对于低功率低总谐波失真(THD),基于CSMC 0.5μmBCD工艺,讨论并分析了一种新型的临界传导模式升压功率因数校正(PFC)转换器。引入前馈补偿设计是为了增加PWM占空比,并在输入电压过零点附近提供更多的转换能量,从而调节PFC转换器的电感器电流,并补偿系统环路增益随交流线电压的变化。理论和实践结果均表明,所提出的具有前馈补偿单元的PFC转换器具有更好的功率因数和THD性能,并且适用于低功耗低THD设计应用。升压PFC转换器的实验THD为4.5%,启动电流为54μA,稳定工作电流为3.85mA,功率因数为0.998,效率为95.2%。

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