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dc.contributor.author Ali, SW
dc.contributor.author Verma, AK
dc.contributor.author Terriche, Y
dc.contributor.author Sadiq, M
dc.contributor.author Su, CL
dc.contributor.author Lee, CH
dc.contributor.author Elsisi, M
dc.date.accessioned 2024-01-17T15:54:31Z
dc.date.available 2024-01-17T15:54:31Z
dc.date.issued 2022
dc.identifier.uri https://repositorio.uoh.cl/handle/611/531
dc.description.abstract Grid faults are found to be one of the major issues in renewable energy systems, particularly in wind energy conversion systems (WECS) connected to the grid via back-to-back (BTB) converters. Under such faulty grid conditions, the system requires an effective regulation of the active (P) and reactive (Q) power to accomplish low voltage ride through (LVRT) operation in accordance with the grid codes. In this paper, an improved finite-control-set model predictive control (FCS-MPC) scheme is proposed for a PMSG based WECS to achieve LVRT ability under symmetrical and asymmetrical grid faults, including mitigation of DC-link voltage fluctuation. With proposed predictive control, optimized switching states for cost function minimization with weighing factor (WF) selection guidelines are established for robust BTB converter control and reduced cross-coupling amid P and Q during transient conditions. Besides, grid voltage support is provided by grid side inverter control to inject reactive power during voltage dips. The effectiveness of the FCS-MPC method is compared with the conventional proportional-integral (PI) controller in case of symmetrical and asymmetrical grid faults. The simulation and experimental results endorse the superiority of the developed FCS-MPC scheme to diminish the fault effect quickly with lower overshoot and better damping performance than the traditional controller.
dc.description.sponsorship Ministry of Science and Technology of Taiwan(Ministry of Science and Technology, Taiwan)
dc.relation.uri http://dx.doi.org/10.3390/math10224266
dc.subject model predictive control
dc.subject PI control
dc.subject wind energy
dc.subject PMSG
dc.subject reactive power
dc.subject LVRT capability
dc.subject grid faults
dc.title Finite-Control-Set Model Predictive Control for Low-Voltage-Ride-Through Enhancement of PMSG Based Wind Energy Grid Connection Systems
dc.type Artículo
uoh.revista MATHEMATICS
dc.identifier.doi 10.3390/math10224266
dc.citation.volume 10
dc.citation.issue 22
dc.identifier.orcid Verma, Anant Kumar/0000-0002-8719-4869
dc.identifier.orcid Elsisi, Mahmoud/0000-0002-0411-9637
dc.identifier.orcid Lee, Chung-Hong/0000-0003-4178-5388
dc.identifier.orcid Wajahat Ali, Syed/0000-0001-8459-1060
dc.identifier.orcid Su, Chun-Lien/0000-0003-3596-8401
uoh.indizacion Web of Science


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