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AuthorHassan Abdullah, Khalid
AuthorAl-Emadi, Nasser Ahmed
AuthorBen-Brahim, Lazhar
AuthorGastli, Adel
AuthorCecati, Carlo
Available date2022-11-15T11:07:43Z
Publication Date2021-09
Publication NameInternational Journal of Electrical Power & Energy Systems
Identifierhttp://dx.doi.org/10.1016/j.ijepes.2021.106895
CitationKhalid, H. A., Al-Emadi, N. A., Ben-Brahim, L., Gastli, A., & Cecati, C. (2021). A novel model predictive control with an integrated SOC and floating DC-link voltage balancing for 3-phase 7-level PUC converter-based MV BESS. International Journal of Electrical Power & Energy Systems, 130, 106895.
ISSN0142-0615
URIhttps://www.sciencedirect.com/science/article/pii/S0142061521001356
URIhttp://hdl.handle.net/10576/36458
AbstractCompared to conventional multilevel topologies, the Packed U-Cell multilevel topology utilizes the minimum number of components and provides both maximum voltage levels and high reliability. When used in a battery energy storage system, its dc-link consists of a top branch battery storage and bottom branch flying capacitors, whose state of charge and voltages must be balanced.This paper proposes a novel control scheme with two cascaded controllers: the inner loop regulates the output filter current and dc-link voltages using a novel finite-set model predictive control, the outer one is fully integrated with the model predictive controller and regulates the battery state of charge by injecting a zero-sequence voltage. The proposed control scheme was successfully implemented and tested through simulation and real-time testing. The obtained results highlight good dynamic performance and robustness of the proposed scheme during active power injection/absorption and low voltage ride-through capability.
SponsorQatar University Internal Grant No. QUCP-CENG-EE-15 16–4
Languageen
PublisherElsevier
SubjectBESS
Power converters
Packed U-cell
SOC
Power quality
Model predictive control
TitleA novel model predictive control with an integrated SOC and floating DC-link voltage balancing for 3-phase 7-level PUC converter-based MV BESS
TypeArticle
Volume Number130
dc.accessType Abstract Only


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