Title :
Multi Objective Evolutionary Algorithm Applied to the Optimal Power Flow Problem
Author :
Amorim, E.A. ; Hashimoto, S.H.M. ; Lima, F.G.M. ; Mantovani, J.R.S.
Author_Institution :
Depto. de Eng. Eletr., Univ. Fed. de Mato Grosso do Sul-UFMS, Campo Grande, Brazil
fDate :
6/1/2010 12:00:00 AM
Abstract :
This work presents the application of a multiobjective evolutionary algorithm (MOEA) for optimal power flow (OPF) solution. The OPF is modeled as a constrained nonlinear optimization problem, non-convex of large-scale, with continuous and discrete variables. The violated inequality constraints are treated as objective function of the problem. This strategy allows attending the physical and operational restrictions without compromise the quality of the found solutions. The developed MOEA is based on the theory of Pareto and employs a diversity-preserving mechanism to overcome the premature convergence of algorithm and local optimal solutions. Fuzzy set theory is employed to extract the best compromises of the Pareto set. Results for the IEEE-30, RTS-96 and IEEE-354 test systems are presents to validate the efficiency of proposed model and solution technique.
Keywords :
Pareto optimisation; convergence; evolutionary computation; fuzzy set theory; load flow; nonlinear programming; IEEE-30 test system; IEEE-354 test systems; Pareto set theory; RTS-96 test systems; constrained nonlinear optimization problem; continuous variables; discrete variables; diversity-preserving mechanism; fuzzy set theory; multiobjective evolutionary algorithm; objective function; optimal power flow problem; violated inequality constraints; Capacitors; Constraint optimization; Convergence; Evolutionary computation; Fuzzy set theory; Large-scale systems; Load flow; Optimization; Power system modeling; Robustness; Single event transient; System testing; Multiobjective Evolutionary Algorithm; Multiobjective Optimization; Optimal Power Flow;
Journal_Title :
Latin America Transactions, IEEE (Revista IEEE America Latina)
DOI :
10.1109/TLA.2010.5538398