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dc.contributor.author Ibaceta, Efrain
dc.contributor.author Diaz, Matias
dc.contributor.author Rajendran, Saravanakumar
dc.contributor.author Arias, Yeiner
dc.contributor.author Cárdenas, Roberto
dc.contributor.author Rodriguez, Jose
dc.date.accessioned 2026-02-08T03:19:23Z
dc.date.available 2026-02-08T03:19:23Z
dc.date.issued 2024-01
dc.identifier.issn 2227-9717
dc.identifier.uri https://repositorio.uss.cl/handle/uss/20207
dc.description Publisher Copyright: © 2024 by the authors.
dc.description.abstract The Modular Multilevel Converter (MMC) has been widely used in high-power applications owing to its inherent advantages, including scalability, modularity, high-power density, and fault tolerance. MMCs have recently been used in Low-Frequency Alternating Current (LFAC) transmission, particularly in the integration of offshore wind power with onshore grids. However, LFAC applications produce significant voltage oscillations in floating capacitor voltages within the MMC. Early research efforts have successfully established and validated decoupled control strategies for LFAC-based MMC systems. However, validations are usually based on simulations or small-scale prototypes equipped with limited power cells. Consequently, this paper presents a decentralized voltage control strategy based on Nearest Level Control for an MMC-based LFAC system. Experimental results obtained with a 120-cell MMC prototype are presented to validate the effectiveness and operation of the MMC in LFAC applications. en
dc.language.iso eng
dc.relation.ispartof vol. 12 Issue: no. 1 Pages:
dc.source Processes
dc.title Experimental Assessment of a Decentralized Control Strategy for a Back-to-Back Modular Multilevel Converter Operating in Low-Frequency AC Transmission en
dc.type Artículo
dc.identifier.doi 10.3390/pr12010155
dc.publisher.department Facultad de Ingeniería


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