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AuthorTrabelsi, Mohamed
AuthorBayhan, Sertac
AuthorAbu-Rub, Haitham
AuthorBen-Brahim, Lazhar
Available date2021-01-25T06:45:46Z
Publication Date2017
Publication NameInternational Journal of Hydrogen Energy
ResourceScopus
ISSN3603199
URIhttp://dx.doi.org/10.1016/j.ijhydene.2017.04.200
URIhttp://hdl.handle.net/10576/17445
AbstractThis paper presents a multi-objective Model Predictive Control (MPC) for a grid connected 2-cell 5-level quasi Z-Source (qZS) Cascaded H-Bridge (CHB) inverter. The main contribution of the proposed control approach is the design of a multi-constraint cost function to achieve multi-objective MPC strategy dealing with the complex nature of the presented qZS-CHB topology. The designed cost function takes into account three control objectives, which are the minimization of the grid current, input current, and capacitors' voltages tracking errors. The best performance scenario is realized through the fine tuning of the constraints' weighting factors based on the grid current's error minimization and the reduction of the double-line frequency ripples on the input current. As a result, the proposed scheme achieves high-quality tracking of the encompassed state variables with the elimination of the double-line frequency power flow through the qZS inductors leading to the reduction of the hysteresis losses and the increase of the overall system efficiency. The performance of the proposed MPC strategy has been investigated and compared to the state of art PI controller. Theoretical analysis and implementation results are given to show that the proposed scheme is suitable for all system configurations and has good performances even during disturbances. 1 2017 Hydrogen Energy Publications LLC
SponsorThis work was made possible by NPRP-EP Grant no. X-033-2-007 from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors.
Languageen
PublisherElsevier Ltd
SubjectGrid integration
Model predictive control
Multilevel inverter
Quasi-Z-source network
Renewable energy sources
TitlePerformance enhancement of cascaded qZS-HB based renewable energy system using Model Predictive Control
TypeArticle
Pagination17917-17927
Issue Number28
Volume Number42


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