Title :
Design of the Optimal Self-tuning Fuzzy-PI Controller for Rectifier Current Control in HVDC System
Author :
Zhongxian Wang ; Taechon Ahn
Author_Institution :
Wonkwang Univ., Ik-San, South Korea
Abstract :
In this paper, we study an approach to design a self-tuning fuzzy-PI controller in HVDC (high voltage direct current) system. In the rectifier of conversional HVDC system, turning on, turning off, triggering and protections of thyristors have lots of problems that can make the dynamic instability and cannot damp the dynamic disturbance efficiently. The above problems are solved by adapting fuzzy-PI controller for the fire angle control of rectifier. The performance of the fuzzy-PI controller is sensitive to the variety of scaling factors. The design procedure dwells on the use of evolutionary computing (genetic algorithms, GAs). Then we can obtain the optimal scaling factors of the fuzzy-PI controller by genetic algorithms. In order to improve fuzzy-PI controller, we adopt FIS to tune the scaling factors of the fuzzy-PI controller on line. A comparative study has been performed between fuzzy-PI and self-tuning fuzzy-PI controller, to prove the superiority of the proposed scheme.
Keywords :
HVDC power convertors; PI control; adaptive control; fuzzy control; genetic algorithms; optimal control; power system control; rectifiers; thyristors; HVDC system; dynamic instability; evolutionary computing; fire angle control; genetic algorithm; high voltage direct current system; optimal self-tuning fuzzy-PI controller; rectifier current control; thyristor; Control systems; Current control; Genetic algorithms; HVDC transmission; Optimal control; Protection; Rectifiers; Thyristors; Turning; Voltage control; Fuzzy-PI controller; Genetic Algorithms(GAs); HVDC; Self-tuning controller;
Conference_Titel :
Control Conference, 2006. CCC 2006. Chinese
Conference_Location :
Harbin
Print_ISBN :
7-81077-802-1
DOI :
10.1109/CHICC.2006.280610