DocumentCode :
2102132
Title :
Power system Automatic Voltage Regulator design based on Static Output Feedback PID using iterative linear matrix inequality
Author :
Abdel Ghany, A.M.
Author_Institution :
Electr. Power & Machines Dept, Helwan Univ., Cairo
fYear :
2008
fDate :
12-15 March 2008
Firstpage :
441
Lastpage :
446
Abstract :
This paper describes the design and simulation of a static output feedback (SOF) PID automatic voltage regulator (AVR) for a synchronous-machine infinite-bus power system. The design of the regulator guarantees the stability of the closed loop system and ensures the output voltage is maintained within an acceptable threshold. In addition, it damps out local-mode oscillations of the synchronous generator to make supplementary control to provide extra damping not needed. Iterative Linear matrix Inequality (ILMI) method is developed to find the PID parameter gains of the regulator. Classical conventional IEEE type voltage is added for comparison purposes and the results are reported. The system performance is analyzed through simulating severe disturbances, different operating points and parameters variation. The system with the designed robust regulator is found to fulfill the main good excitation control requirements.
Keywords :
closed loop systems; iterative methods; linear matrix inequalities; power system control; stability; state feedback; synchronous machines; three-term control; voltage control; PID; automatic voltage regulator; closed loop system stability; iterative linear matrix inequality; power system automatic voltage regulator design; static output feedback; synchronous-machine infinite-bus power system; Automatic generation control; Closed loop systems; Linear matrix inequalities; Output feedback; Power system simulation; Power system stability; Power systems; Regulators; Synchronous generators; Threshold voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power System Conference, 2008. MEPCON 2008. 12th International Middle-East
Conference_Location :
Aswan
Print_ISBN :
978-1-4244-1933-3
Electronic_ISBN :
978-1-4244-1934-0
Type :
conf
DOI :
10.1109/MEPCON.2008.4562396
Filename :
4562396
Link To Document :
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