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Light-Load Efficiency Improvement in Buck-Derived Single-Stage Single-Switch PFC Converters

机译:降压派生的单级单开关PFC转换器的轻载效率提高

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Single-stage single-switch ac/dc converters with power factor correction (PFC) generally have higher power losses under a light-load condition, as compared to that of the two-stage approach, due to the sharing of a common power transistor such that the PFC stage cannot be switched OFF separately to save power losses. This letter addresses this problem by using a buck topology for the PFC stage of the single-stage single-switch converters as it can be completely turned OFF by operating the converter only near the zero crossing of the input voltage, due to the presence of the dead angle of input current. Hence, the switching and conduction losses to the transistor and diodes, and passive devices are reduced. Also, further improvement is made by finding the best combination of dc-bus capacitor charging time and discharging time to achieve the lowest power loss. A recently proposed converter topology which combines a buck PFC cell with a buck–boost dc/dc cell is used as an example. Experimental results are reported and confirmed that the proposed light-load power loss reduction scheme on the converter can improve power stage efficiency by up to 7% at 1 W of output power as compared to that without the proposed scheme.
机译:与两级方法相比,具有功率因数校正(PFC)的单级单开关AC / DC转换器在轻载条件下通常具有较高的功率损耗,这是因为共用了一个功率晶体管,例如PFC级不能单独关闭以节省功率损耗。这封信通过在单级单开关转换器的PFC级使用降压拓扑来解决此问题,因为由于存在交流电,仅通过在输入电压的零交叉附近操作转换器,就可以完全关断它。输入电流的死角。因此,减少了晶体管和二极管以及无源器件的开关和传导损耗。此外,通过找到直流总线电容器充电时间和放电时间的最佳组合以实现最低的功耗,可以实现进一步的改进。以最近提出的转换器拓扑为例,该转换器拓扑将降压PFC单元与降压-升压dc / dc单元相结合。报告了实验结果并证实,与没有拟议方案相比,在转换器上提出的轻载功率降低方案在输出功率为1 W时可以将功率级效率提高高达7%。

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