Study and Application of the Advanced Frequency Control Techniques H∞ in the Voltage Automatic Regulator of Powerful Synchronous Generators (Application under Gui/Matlab)

Author:

Eddine Ghouraf Djamel1,Abdellatif Naceri1

Affiliation:

1. Department of Electrical Engineering University of SBA IRECOM Laboratory BP 98 22000 Algeria

Abstract

This article presents a study of of the advanced frequency control techniques based on loop-shaping H∞ optimization method applied on automatic excitation control of powerful synchronous generators (AVR and PSS), to improve transient stability and its robustness of a single machine- infinite bus system (SMIB).The computer simulation results (static and dynamic stability), with test of robustness against machine parameters uncertainty (electric and mechanic), have proved that good dynamic performances, showing a stable system responses almost insensitive to large parameters variations, and more robustness using the robust H-infinity controller, in comparison with the classical Russian PID power system stabilizer . Our present study was performed using a GUI realized under MATLAB in our work.

Publisher

North Atlantic University Union (NAUN)

Subject

Pharmacology (medical),Complementary and alternative medicine,Pharmaceutical Science

Reference24 articles.

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3. GUPTA, R.—BANDYO, B.—KULKARNI, A. M.: Design of Power System Stability forSingle Machine System Using Robust Fast Output Sampling Feedback Technique, Electrical Power Systems Research 65 (2003), 247-257.

4. BOUHAMIDA, M.—DENAI, M. A.—MOKHTARI, A.—BOUHENNA, A.: GH∞ Robust Power System Stabilizer Design with Parametric Uncertainty, International Conference on Electrical and Electronics Engineering (ELECO’99), 1-5 December 1999, Bursa, Turkey.

5. ZIAD M. M. ALI , ALEXANDER I.: ROBUST TECHNIQUES FOR DESIGNING POWER SYSTEM STABILIZER Journal of Theoretical and Applied Information Technology 2009

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