Title :
Strength Pareto Multigroup Search Optimizer for Multiobjective Optimal Reactive Power Dispatch
Author :
Bin Zhou ; Ka Wing Chan ; Tao Yu ; Hua Wei ; Jie Tang
Author_Institution :
Guangxi Key Lab. of Power Syst. Optimization & Energy Technol., Guangxi Univ., Nanning, China
Abstract :
Multiobjective optimal reactive power dispatch (MORD) is a highly constrained nonlinear nondifferential multimodal Pareto optimization problem with a mixture of continuous and discrete variables. This paper presents a novel strength Pareto multigroup search optimizer (SPMGSO) for solving this challenging problem. In the proposed algorithm, a number of enhancement mechanisms, such as ring-migration synergistic cooperation, crowding entropy constraint treatment, and chaotic logistic dispersion, were developed to effectively strengthen the diversity and distribution of the resulting nondominated front (NDF). The final best compromise solution is then extracted from the NDF using a hierarchical clustering and an equilibria-based multicriteria decision-making scheme. In addition, the multicore processing was introduced to parallelize the multigroup search so as to greatly improve the execution speed of the algorithm. Computational studies on the benchmark IEEE 30-bus and 162-bus power systems have confirmed the superior performance and improvement of the proposed algorithm for solving this Pareto problem, and demonstrated its applicability and capability to cope with the high-dimensional MORD problems with multiple operational objectives.
Keywords :
IEEE standards; Pareto optimisation; decision making; entropy; load dispatching; reactive power; IEEE 162-bus power systems; IEEE 30-bus power systems; Pareto problem; chaotic logistic dispersion; discrete variables; enhancement mechanisms; entropy constraint treatment; equilibria-based multicriteria decision-making scheme; hierarchical clustering; high-dimensional MORD problems; multicore processing; multigroup search; multiobjective optimal reactive power dispatch; nondominated front; nonlinear nondifferential multimodal Pareto optimization problem; ring-migration synergistic cooperation; strength Pareto multigroup search optimizer; Algorithm design and analysis; Optimization; Power system stability; Reactive power; Search problems; Sociology; Statistics; Crowding entropy; Nash equilibrium; Pareto optimality; multicore parallel optimization; multigroup search optimizer; multiobjective optimal reactive power dispatch (MORD);
Journal_Title :
Industrial Informatics, IEEE Transactions on
DOI :
10.1109/TII.2014.2310634