Robust decentralized L.F.C. with online iteraction trajectory improvement

dc.contributor.authorAli Abdel-Gader Cherid
dc.date1983
dc.date.accessioned2022-05-18T04:03:47Z
dc.date.available2022-05-18T04:03:47Z
dc.degree.departmentCollege of Engineering Sciences and Applied Engineering
dc.degree.grantorKing Fahad for Petrolem University
dc.description.abstractA Model-following decentralized algorithm to design near-optimal load frequency regulator for large interconnected dynamic power systems is considered. By using a simple reduced-order model for the interaction between subsystems, a decentralized controller whose parameters are independent of initial states and which can accommodate constant disturbances, is designed. No information transfer between different sub-systems is necessary. The choice of the crude model of the interaction is scrutinized in order to develop a feedback controller which fits the load frequency problem. The decentralized algorithm is applied to a multi-area power system to control the load and frequency. The performance of the resulting controller is compared to that of the known integrated optimal controller. The algorithm is also tested on different system configurations to prove its efficiency.
dc.identifier.other5387
dc.identifier.urihttps://drepo.sdl.edu.sa/handle/20.500.14154/599
dc.language.isoen
dc.publisherSaudi Digital Library
dc.thesis.levelMaster
dc.thesis.sourceKing Fahad for Petrolem University
dc.titleRobust decentralized L.F.C. with online iteraction trajectory improvement
dc.typeThesis

Files

Copyright owned by the Saudi Digital Library (SDL) © 2025