2018•Unpublished venueRequires access

A non-isolated buck-boost DC-DC converter with single switch

Ali Sarikhani, Babak Allahverdinejad, Hossein Torkaman

Open publisher page 20 citations

Abstract

In this paper a new Buck-Boost converter with only one active switch is presented. In this topology, control of the proposed converter is simple; also, the total switch stress of the converter is relatively low. Moreover, the voltage gain of proposed converter is higher than that of traditional Buck-Boost, Sepic, Zeta, and Cuk converters. Furthermore, the high voltage gain can be obtained with suitable duty cycles. In this regard, converter topology is presented and analyzed analytically in different modes, then converter is simulated with PLECS software and results are assessed to demonstrate its effectiveness.

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What this paper is about

In this paper a new Buck-Boost converter with only one active switch is presented. In this topology, control of the proposed converter is simple; also, the total switch stress of the converter is relatively low. Moreover, the voltage gain of proposed converter is higher than that of traditional Buck-Boost, Sepic, Zeta, and Cuk converters. Furthermore, the high voltage gain can be obtained with suitable duty cycles. In this regard, converter topology is presented and analyzed analytically in different modes, then converter is simulated with PLECS software and results are assessed to demonstrate its effectiveness.

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OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper a new Buck-Boost converter with only one active switch is presented. In this topology, control of the proposed converter is simple; also, the total switch stress of the converter is relatively low. Moreover, the voltage gain of proposed converter is higher than that of traditional Buck-Boost, Sepic, Zeta, and Cuk converters. Furthermore, the high voltage gain can be obtained with suitable duty cycles. In this regard, converter topology is presented and analyzed analytically in different modes, then converter is simulated with PLECS software and results are assessed to demonstrate its effectiveness.

Key concepts: Ćuk converter, Buck converter, Buck–boost converter, Boost converter, Forward converter, Flyback converter, Converters, Topology (electrical circuits)

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