Light-load efficiency improvement for zero-voltage switching boost integrated converters

Power Electronics and ECCE Asia(2011)

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摘要
In general, a zero-voltage switching (ZVS) condition of boost-integrated DC-DC converters is load dependent and lost at a light load due to an insufficient energy stored in a leakage inductor. To extend a ZVS load range without increasing an external leakage inductor at a light load condition, a frequency modulation (FM) control is proposed. By modulating a switching frequency adaptive to a load current at a desired load range, ZVS can be recovered through an energy stored in a boost inductor so that the switching losses can be significantly reduced. Thus, the conversion efficiency at a light load condition can be improved. A ZVS boost integrated flyback (BIF) converter with a voltage doubler rectifier (VDR) is presented to apply the proposed control method as an example. Experimental results from a digitally implemented prototype are shown to demonstrate the proposed work.
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dc-dc power convertors,frequency control,inductors,rectifying circuits,switching convertors,zero voltage switching,zvs boost integrated flyback converter,zvs load range,boost inductor,boost-integrated dc-dc converters,external leakage inductor,frequency modulation control,light-load efficiency improvement,switching frequency,switching losses,voltage doubler rectifier,zero voltage switching boost integrated converters,boost integration,frequency modulation (fm),zero-voltage switching (zvs),conversion efficiency
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