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01-06-2024 | Original Paper

9–Level switched capacitor–high-voltage gain boosting inverter (SC-HVGBI) topology with reduced voltage stress

Authors: Vijayakumar Arun, Albert Alexander Stonier, Geno Peter, K. Ezhil Vignesh, D. Ferlin Deva Shahila

Published in: Electrical Engineering | Issue 6/2024

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Abstract

The article presents a pioneering 9-level switched capacitor high-voltage gain boosting inverter (SC-HVGBI) topology designed to enhance voltage output while minimizing voltage stress and the number of components. This innovative design leverages a self-balancing mechanism for capacitor voltages, reducing the complexity of modulation algorithms. The SC-HVGBI is capable of doubling the voltage input, generating a nine-level output voltage, and ensuring efficient operation under transient load conditions. The proposed configuration is compared with existing inverter topologies, demonstrating superior efficiency and reduced power losses. The article includes comprehensive simulation and experimental results, showcasing the inverter's performance in dynamic load and modulation index variations. The findings highlight the SC-HVGBI's potential for practical applications in high-frequency AC microgrid systems, making it a significant contribution to the field of power electronics.

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Metadata
Title
9–Level switched capacitor–high-voltage gain boosting inverter (SC-HVGBI) topology with reduced voltage stress
Authors
Vijayakumar Arun
Albert Alexander Stonier
Geno Peter
K. Ezhil Vignesh
D. Ferlin Deva Shahila
Publication date
01-06-2024
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 6/2024
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02491-9