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Design and Analysis of Single-Stage Power Factor Correction Converter With a Feedback Winding

机译:具有反馈绕组的单级功率因数校正转换器的设计与分析

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摘要

A new single-stage power factor correction (SSPFC) converter is proposed for the adapter application, which is composed of a flyback converter, a feedback winding and a front-end input current shaper. Through the feedback winding, a direct energy transfer path is configured to improve the conversion efficiency and alleviate the voltage stress across the bulk capacitor. Moreover, the feedback winding is connected to the input through only two diodes, which results in low conduction losses. Equations and configurations are given to design the input current-shaping inductor and the magnetizing inductor of the transformer, which are operated in the discontinuous conduction mode (DCM) and the DCM/ continuous conduction mode boundary mode respectively for well-shaped current waveform and reduced bulk capacitor voltage. The theoretical analysis of the converter is verified by two SSPFC prototype circuits with 19 V/90 W output. One prototype achieves a high efficiency of 90.3%, while complying with IEC 61000-3-2 Class D standard. With a different turns ratio design, the power factor can be further improved to 0.97 in another prototype.
机译:提出了一种用于适配器应用的新型单级功率因数校正(SSPFC)转换器,该转换器由反激转换器,反馈绕组和前端输入电流整形器组成。通过反馈绕组,直接能量传输路径配置为提高转换效率并缓解大容量电容器两端的电压应力。此外,反馈绕组仅通过两个二极管连接到输入,这导致较低的传导损耗。给出方程式和配置来设计变压器的输入电流整形电感器和励磁电感器,它们分别在不连续传导模式(DCM)和DCM /连续传导模式边界模式下工作,以形成良好的电流波形并减小大容量电容器电压。转换器的理论分析由两个具有19 V / 90 W输出的SSPFC原型电路验证。一个原型符合IEC 61000-3-2 D类标准,效率高达90.3%。采用不同的匝数比设计,在另一个原型中,功率因数可以进一步提高到0.97。

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