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High Efficiency High-Step-up Single-ended DC-DC Converter with Small Output Voltage Ripple
- Source :
- Journal of Power Electronics. 15:1468-1479
- Publication Year :
- 2015
- Publisher :
- The Korean Institute of Power Electronics, 2015.
-
Abstract
- Renewable energy resources such as wind and photovoltaic power generation systems demand a high step-up DC–DC converters to convert the low voltage to commercial grid voltage. However, the high step-up converter using a transformer has limitations of high voltage stresses of switches and diodes when the transformer winding ratio increases. Accordingly, conventional studies have been applied to series-connect multioutput converters such as forward–flyback and switched-capacitor flyback to reduce the transformer winding ratio. This paper proposes new single-ended converter topologies of an isolation type and a non-isolation type to improve power efficiency, cost-effectiveness, and output ripple. The first proposal is an isolation-type charge-pump switched-capacitor flyback converter that includes an extreme-ratio isolation switched-capacitor cell with a chargepump circuit. It reduces the transformer winding number and the output ripple, and further improves power efficiency without any cost increase. The next proposal is a non-isolation charge-pump switched-capacitor-flyback tapped-inductor boost converter, which adds a charge-pump-connected flyback circuit to the conventional switched-capacitor boost converter to improve the power efficiency and to reduce the efficiency degradation from the input variation. In this paper, the operation principle of the proposed scheme is presented with the experimental results of the 100 W DC–DC converter for verification.
- Subjects :
- Forward converter
Engineering
Switched-mode power supply
Buck converter
business.industry
Flyback converter
Flyback transformer
Ćuk converter
Buck–boost converter
Control and Systems Engineering
Boost converter
Hardware_INTEGRATEDCIRCUITS
Electronic engineering
Electrical and Electronic Engineering
business
Subjects
Details
- ISSN :
- 15982092
- Volume :
- 15
- Database :
- OpenAIRE
- Journal :
- Journal of Power Electronics
- Accession number :
- edsair.doi...........b33c4d1216ef9b2ed2ddbe091b1b697a
- Full Text :
- https://doi.org/10.6113/jpe.2015.15.6.1468