The paper shows the idealized performance and a design methodology for the isolated version of the SEPIC DC/DC converter, including a non-dissipative snubber. This paper compares the use of a Single-Ended Primary-Inductor Converter (SEPIC) and a flyback converter as Photovoltaic (PV) charge controllers for battery charging applications. A simulation based study is also presented, comparing key performance metrics, like efficiency, input voltage and output current ripple, between the proposed architecture and an industry-standard flyback converter.
SEPIC and Flyback Converters for Isolated Photovoltaic Battery Charging Application / Tan, N. M. L.; Savi, F.; Buticchi, G.; Ahmad, S.; Gerada, C.. - (2021), pp. 1-6. (Intervento presentato al convegno 6th IEEE Workshop on the Electronic Grid, eGRID 2021 tenutosi a New Orleans, LA, USA nel 08-10 November 2021) [10.1109/eGRID52793.2021.9662142].
SEPIC and Flyback Converters for Isolated Photovoltaic Battery Charging Application
Savi F.;Buticchi G.;Gerada C.
2021
Abstract
The paper shows the idealized performance and a design methodology for the isolated version of the SEPIC DC/DC converter, including a non-dissipative snubber. This paper compares the use of a Single-Ended Primary-Inductor Converter (SEPIC) and a flyback converter as Photovoltaic (PV) charge controllers for battery charging applications. A simulation based study is also presented, comparing key performance metrics, like efficiency, input voltage and output current ripple, between the proposed architecture and an industry-standard flyback converter.File | Dimensione | Formato | |
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