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AuthorSiddique, Marif Daula
AuthorIqbal, Atif
AuthorMemon, M. A.
AuthorMekhilef, Saad
Available date2022-03-31T08:05:54Z
Publication Date2020
Publication NameIEEE Access
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/ACCESS.2020.3030951
URIhttp://hdl.handle.net/10576/29149
AbstractMultilevel inverters (MLI) are now becoming an important element for medium-voltage highpower applications. A low switch count MLIs are more popular due to their high efficiency, low cost, and easy control for the output having a higher number of levels. A new MLI topology for single-phase applications based on switched dc voltage source with reduced switch count is proposed in the paper. The presented topology is developed with the constraints of lesser blocking voltage of the switches with a higher number of levels at the output using a lower number of components. The proposed topology can also work in the symmetrical and asymmetrical configuration. Selective harmonic elimination (SHE) technique is applied to synthesize the staircase output voltages with eliminations of lower order harmonics by optimized computation of angles for switching operation. The comparative studies with the MLIs recommended in recent times show the importance of the proposed MLI structure in terms of reduced switch count and lower voltage stresses across switches in both asymmetrical and symmetrical configurations. The experimental results are presented to confirm the performance of the proposed topology.
SponsorThis work was supported by the Qatar University-Marubeni Concept to Prototype Development Research grant # [MCTP-CENG-2020-2] from the Qatar University and the publication charges (APC) is paid by the Qatar National Library, Doha, Qatar.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectAsymmetrical sources
Multilevel inverter
Reduced semiconductor devices
Selective harmonics elimination
Symmetrical sources
Total standing voltage
TitleA new configurable topology for multilevel inverter with reduced switching components
TypeArticle
Pagination188726-188741
Volume Number8
dc.accessType Abstract Only


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