2010Unpublished venueRequires access

A high step-up, non-isolated DC-DC converter with reduced repeated power processing

Dylan Dah‐Chuan Lu, Grace Chu, Vassilios G. Agelidis

Open publisher page 4 citations

Abstract

This paper proposes a non-isolated converter that is based on a flyback topology. The proposed converter has high conversion ratio and achieves higher efficiency with reduced voltage and current stresses on the power semiconductors when compared to the conventional flyback converter. Analysis and key converter operating waveforms are reported in the paper. Experimental results taken from a 60 W laboratory prototype with 24 V input voltage delivering 200 V to the load are presented to confirm the capability of the converter to generate high-voltage ratios. The converter maintains efficiency of over 90 % from light-load to nominal-load conditions. The proposed converter is suitable for applications such as DC micro-grids and solar electrical energy systems which require high step-up DC-DC converters but may not necessarily require transformer isolation.

About this research paper

What this paper is about

This paper proposes a non-isolated converter that is based on a flyback topology. The proposed converter has high conversion ratio and achieves higher efficiency with reduced voltage and current stresses on the power semiconductors when compared to the conventional flyback converter. Analysis and key converter operating waveforms are reported in the paper. Experimental results taken from a 60 W laboratory prototype with 24 V input voltage delivering 200 V to the load are presented to confirm the capability of the converter to generate high-voltage ratios. The converter maintains efficiency of over 90 % from light-load to nominal-load conditions. The proposed converter is suitable for applications such as DC micro-grids and solar electrical energy systems which require high step-up DC-DC converters but may not necessarily require transformer isolation.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper proposes a non-isolated converter that is based on a flyback topology. The proposed converter has high conversion ratio and achieves higher efficiency with reduced voltage and current stresses on the power semiconductors when compared to the conventional flyback converter. Analysis and key converter operating waveforms are reported in the paper. Experimental results taken from a 60 W laboratory prototype with 24 V input voltage delivering 200 V to the load are presented to confirm the capability of the converter to generate high-voltage ratios. The converter maintains efficiency of over 90 % from light-load to nominal-load conditions. The proposed converter is suitable for applications such as DC micro-grids and solar electrical energy systems which require high step-up DC-DC converters but may not necessarily require transformer isolation.

Key concepts: Flyback converter, Forward converter, Buck converter, Buck–boost converter, Ćuk converter, Flyback transformer, Converters, Boost converter

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