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AuthorSiddique, Marif Daula
AuthorMekhilef, Saad
AuthorShah, Noraisyah Mohamed
AuthorAli, Jagabar Sathik Mohamed
AuthorSeyedmahmoudian, Mehdi
AuthorHoran, Ben
AuthorStojcevski, Alex
Available date2025-03-10T08:18:49Z
Publication Date2020
Publication NameIET Power Electronics
ResourceScopus
Identifierhttp://dx.doi.org/10.1049/iet-pel.2020.0446
ISSN17554535
URIhttp://hdl.handle.net/10576/63555
AbstractThis study proposes a new switched-capacitor-based multilevel inverter topology with a single dc voltage source. The proposed topology finds its suitability for renewable energy applications with low voltage. Seven-level (7L) output voltage is achieved across the load with triple-voltage gain employing 2 capacitors and 12 switches. Self-voltage balancing of capacitor voltages, parallel operation of capacitors during discharging mode, reduced voltage stress, and bipolar output voltage generation without using backend H-bridge are the major features of the proposed topology. Furthermore, a generalised structure of the proposed topology has also been discussed here. A comparison with other similar topologies with single-source 7L configuration has been carried out to show the advantages of the proposed topology with reduced switch count. Experimental results have been provided to verify the performance of the proposed topology with different operating conditions.
SponsorThe authors would like to thank University of Malaya, Malaysia, for providing financial support under the research grant Impact Oriented Interdisciplinary Research Grant (IIRG): IIRG011A-2019, Ministry of Higher Education, Malaysia under Large Research Grant Scheme (LRGS): LR008-2019 and Ministry of International Trade and Industry (MITI), Malaysia through MIDF under High Value Added and Complex Product Development and Market Program: GA016-2019.
Languageen
PublisherInstitution of Engineering and Technology
SubjectSwitched-Capacitor-Based Topology
Renewable Energy Applications
Seven-Level Output Voltage
Capacitor Voltage Balancing
Experimental Results
TitleSwitched-capacitor-based boost multilevel inverter topology with higher voltage gain
TypeArticle
Pagination3026-3031
Issue Number14
Volume Number13
dc.accessType Open Access


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