Power System Stabilizer Design based on Honey-Bee Mating Optimization Algorithm

Autori

  • Abolfazl Halvaei Niasar Faculty of Electrical & Computer Engineering, University of Kashan
  • Dariush Zamani University of Allameh Feyz Kashani, Kashan, Iran

Parole chiave:

dynamic stability, honey-bee mating, power system stabilizer, intelligent algorithm

Abstract

Power system stability is one of the main factors in performance of electrical system. A control system must retain frequency and voltage size under any distortion such as sudden increase in load, to leave a generator from circuit or cut off a transmission line in a constant level. In this paper, Honey-bee mating optimization (HBMO) algorithm has been used to design power system stabilizer. It is based on the mating between queen and bees. Meta-heuristics honey-bee mating optimization algorithm is considered to be an intelligent algorithm. Simulation results show that HBMO algorithm is simple to solve optimization issues.   Keywords: Dynamic stability, honey-bee mating, power system stabilizer, intelligent algorithm

Biografia autore

  • Abolfazl Halvaei Niasar, Faculty of Electrical & Computer Engineering, University of Kashan
    Abolfazl Halvaei Niasar was born in Kashan, Iran in 1974. He received his B.Sc., M.Sc., and Ph.D. in 1998, 2000, and 2008 from Isfahan University of Technology (IUT), university of Tehran (UT) and Iran University of Science and Technology (IUST) all in electrical engineering respectively.   He is currently with the Department of Electrical Engineering, at University of Kashan, Iran. His research interests are mainly PM and Brushless DC motor drives, sensorless drives, DSP based control systems and the industrial control systems. Dr. Halvaei is a member of the Institute of Electrical and Electronics Engineers (IEEE).

Pubblicato

2014-12-31

Fascicolo

Sezione

Research Articles