DocumentCode
3188328
Title
Robust reconfigurable fault-tolerant controllers for PSS/FACTS using Kharitonov theorem and particle swarm optimization
Author
Soliman, Hisham M. ; Bayoumi, Ehab H E ; Awadallah, Mohamed A.
Author_Institution
Electr. Eng. Dept., Cairo Univ., Giza, Egypt
fYear
2010
fDate
18-22 Dec. 2010
Firstpage
200
Lastpage
204
Abstract
The paper establishes a designed propose technique for reconfigurable fault-tolerant controllers applied on a flexible AC transmission system (FACTS) power system. A traditional power system stabilizer (PSS) of the generator excitation system and a controller of the thyristor-controller series capacitor (TCSC) are considered. Good operation of both controllers delivers the required dynamic performance of the system. However, faulty condition signifies a degraded control signal of one controller at a time. The designed scheme proposes that the parameters of one controller switch to some predetermined values if the other controller is faulty with any degradation percentage. Preserving definite settling time of the dynamic response is guaranteed against continual degradation of either controller as the design is implemented by Kharitonov theorem and particle swarm optimization (PSO). The proposed design represents an indirect adaptive PSS. Results represent distinct effectiveness of the proposed design in keeping the desired system performance under sound and different faulty conditions.
Keywords
flexible AC transmission systems; particle swarm optimisation; power system stability; power transmission control; thyristor applications; FACTS; Kharitonov theorem; PSS; dynamic response; generator excitation system; particle swarm optimization; power system stabilisers; robust reconfigurable fault-tolerant controllers; thyristor-controller series capacitor; Control systems; Degradation; Equations; Power capacitors; Power system stability; Thyristors;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conference and Exhibition (EnergyCon), 2010 IEEE International
Conference_Location
Manama
Print_ISBN
978-1-4244-9378-4
Type
conf
DOI
10.1109/ENERGYCON.2010.5771676
Filename
5771676
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