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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/22322
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dc.contributor.authorWang L.-
dc.contributor.authorNguyen T.H.-
dc.contributor.authorTseng C.-C.-
dc.contributor.authorProkhorov A.V.-
dc.contributor.authorMokhlis H.-
dc.contributor.authorChua K.H.-
dc.contributor.authorTripathy, Manoj-
dc.date.accessioned2022-03-21T09:43:33Z-
dc.date.available2022-03-21T09:43:33Z-
dc.date.issued2021-
dc.identifier.citationConference Record - IAS Annual Meeting (IEEE Industry Applications Society) (2021), 2021-October-
dc.identifier.isbn9.78173E+12-
dc.identifier.issn1972618-
dc.identifier.urihttps://doi.org/10.1109/IAS48185.2021.9677271-
dc.identifier.urihttp://repository.iitr.ac.in/handle/123456789/22322-
dc.description.abstractThis paper presents the damping-improvement outcomes of a large-scale offshore wind farm (OWF) based on doubly-fed induction generator (DFIG) fed to a two-area four-generator power system using a generalized unified power-flow controller (GUPFC). Two proportional-integral-derivative (PID) damping controllers and two fuzzy logic controllers (FLCs) of the proposed GUPFC are designed to improve the damping of the dominant modes of the studied multi-machine power system under different operating conditions, respectively. Eigenvalue analysis and nonlinear-model simulations are both performed to examine the effectiveness of the proposed GUPFC equipped with the designed damping controllers. The comparative simulation results show that the proposed GUPFC joined with the designed FLCs demonstrates better damping performance for improving the damping of the dominant modes of the studied multimachine system subject to different disturbances than the designed PID damping controllers. © 2021 IEEE.-
dc.language.isoen_US-
dc.publisherInstitute of Electrical and Electronics Engineers Inc.-
dc.relation.ispartofConference Record - IAS Annual Meeting (IEEE Industry Applications Society)-
dc.relation.ispartof2021 IEEE Industry Applications Society Annual Meeting, IAS 2021-
dc.subjectDoubly-fed induction generator-
dc.subjectFuzzy logic controller-
dc.subjectGeneralized unified power-flow controller-
dc.subjectMultimachine power system-
dc.subjectOffshore wind farm-
dc.subjectStability-
dc.titleDamping Improvement of a Large-scale Offshore Wind Farm Fed to a Multimachine Power System Using a Generalized Unified Power-Flow Controller-
dc.typeConference Paper-
dc.scopusid57059516100-
dc.scopusid57225934707-
dc.scopusid57191055355-
dc.scopusid57212545477-
dc.scopusid8136874200-
dc.scopusid36988104100-
dc.scopusid16205441100-
dc.affiliationWang, L., National Cheng Kung University, Department of Electrical Engineering, Tainan, 701301, Taiwan-
dc.affiliationNguyen, T.H., University of Connecticut, Eversource Energy Center, Department of Electrical and Computer Engineering, Storrs, CT 06269, United States-
dc.affiliationTseng, C.-C., National Cheng Kung University, Department of Electrical Engineering, Tainan, 701301, Taiwan-
dc.affiliationProkhorov, A.V., Tomsk Polytechnic University, Institute of Power Engineering, Tomsk, 634050, Russian Federation-
dc.affiliationMokhlis, H., Universiti Malaya, Department of Electrical Engineering, Kuala Lumpur, 50603, Malaysia-
dc.affiliationChua, K.H., Universiti Tunku Abdul Rahman, Department of Electrical and Electronic Engineering, Kajang, 43000, Malaysia-
dc.affiliationTripathy, M., Indian Institute of Technology Roorkee, Department of Electrical Engineering, Roorkee, 247667, India-
dc.identifier.conferencedetails2021 IEEE Industry Applications Society Annual Meeting, IAS 2021, 10 - 14, October, 2021-
Appears in Collections:Conference Publications [EE]

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