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A parallel-connected single phase power factor correction approach with improved efficiency

机译:效率提高的并联单相功率因数校正方法

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In this paper, a new parallel-connected single phase power factor correction (PFC) topology using two flyback converters is proposed to improve the output voltage regulation with simultaneous input power factor correction and control. This approach offers lower cost and higher efficiency by parallel processing of the total power. Flyback converter-I primarily regulates output voltage with fast dynamic response and processes 55% of the power. Flyback converter-II with ac/dc PFC stage regulates input current shaping and PFC, and processes the remaining 45% of the power. This paper presents a design example and circuit analysis for 200 W power supply. A parallel-connected interleaved structure offers smaller passive components, less losses even in continuous conduction inductor current mode, and reduced volt-ampere rating of dc/dc stage converter. TI-DSP, TMS320LF2407, is used for implementation. Simulation and experimental results show the performance improvement.
机译:本文提出了一种使用两个反激式转换器的新型并联单相功率因数校正(PFC)拓扑,以通过同时输入功率因数校正和控制来改善输出电压调节。通过并行处理总功率,此方法可提供较低的成本和较高的效率。反激式转换器I主要通过快速动态响应来调节输出电压,并处理55%的功率。具有AC / DC PFC级的反激式转换器II调节输入电流整形和PFC,并处理剩余的45%的功率。本文介绍了200 W电源的设计实例和电路分析。并联连接的交错结构可提供较小的无源元件,即使在连续导通电感器电流模式下也具有较小的损耗,并且降低了dc / dc级转换器的伏安额定值。 TI-DSP TMS320LF2407用于实现。仿真和实验结果表明了该性能的提高。

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