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dc.contributor.authorBayati, Navid
dc.contributor.authorDadkhah, Akbar
dc.date.accessioned2018-01-09T12:39:46Z
dc.date.available2018-01-09T12:39:46Z
dc.date.issued2017
dc.identifier.issn2344-4738
dc.identifier.urihttp://10.11.10.50/xmlui/handle/123456789/5032
dc.descriptionTHE ANNALS OF “DUNAREA DE JOS” UNIVERSITY OF GALATI FASCICLE III, 2017, VOL. 40, NO. 1, ISSN 2344-4738, ISSN-L 1221-454X ELECTROTECHNICS, ELECTRONICS, AUTOMATIC CONTROL, INFORMATICSro_RO
dc.description.abstractThe frequency load control system was modeled in the two-area restructured system. In case of a sudden load variation in one area, the system frequency undergoes a corresponding change (normally accompanied by a series of transient oscillations). Therefore, the feedback and control mechanisms must be designed in such a way that proper power generation regulation in the generators can be implemented by regulating the control signal in the turbines. Thus, in the steady state, power generation would be exactly equal to the load; and the power passing through transmission lines, frequency drift, and ACE error in the zones would be zero. A high-pass PID filter was used in the controller for damping frequency oscillations. The controller control parameters were converted into an optimization problem and the harmonic search algorithm was used to solve this problem. For obtaining an optimal and efficient design, different working points were considered. The simulation results were compared with the results obtained from genetic algorithms and particle swarm optimization (PSO) algorithms for the purpose of evaluating the efficiency of the proposed controller.ro_RO
dc.language.isoenro_RO
dc.publisherUniversitatea "Dunărea de Jos" din Galațiro_RO
dc.subjectControllerro_RO
dc.subjectderegulated power systemro_RO
dc.subjectRobustro_RO
dc.subjectRPIDro_RO
dc.titleRobust Pid Design for the Deregulated Power System Using HSAro_RO
dc.typeArticlero_RO


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