Title :
Pareto-Optimal Design of Damping Controllers Using Modified Artificial Immune Algorithm
Author :
Khaleghi, Milad ; Farsangi, Malihe M. ; Nezamabadi-Pour, Hossein ; Lee, Kwang Y.
Author_Institution :
Dept. of Electr. Eng., Shahid Bahonar Univ. of Kerman, Kerman, Iran
fDate :
3/1/2011 12:00:00 AM
Abstract :
This paper presents two approaches for multiobjective simultaneous coordinated tuning of damping controllers, a modified artificial immune network (MAINet) algorithm and a multiobjective immune algorithm (MOIA). The weighted-sum approach is used to handle the multiobjective optimization problem in the MAINet, while the Pareto-optimization approach is used in the MOIA. To investigate the ability of the proposed algorithms in designing the damping controllers, one small and one large power systems are considered. Two power-system stabilizers (PSSs) are designed for the small power system, while one PSS for a generator and one supplementary controller for a static var compensator (SVC) are designed for the large power system. The simulation studies show that the controllers designed by MOIA perform better than those by MAINet in damping the power-system low-frequency oscillations.
Keywords :
Pareto optimisation; artificial immune systems; damping; power system stability; static VAr compensators; tuning; MAINet algorithm; MOIA; Pareto-optimal design; Pareto-optimization approach; SVC; damping controllers; modified artificial immune network algorithm; multiobjective immune algorithm; multiobjective simultaneous coordinated tuning; power-system low-frequency oscillations; power-system stabilizers; static var compensator; Artificial immune network algorithm; Pareto optimization; low-frequency oscillations; power system stabilizers (PSS); real immune algorithm; static var compensator (SVC);
Journal_Title :
Systems, Man, and Cybernetics, Part C: Applications and Reviews, IEEE Transactions on
DOI :
10.1109/TSMCC.2010.2052241