Water cycle algorithm for solving constrained multi-objective optimization problems

•Multi-objective water cycle algorithm (MOWCA) is proposed for solving constrained and engineering multi-objective problems.•Generational distance, metric of spread, and Δ metric are used as performance criteria.•Optimal Pareto fronts are finely covered by the MOWCA with a good distribution of the n...

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Vydané v:Applied soft computing Ročník 27; s. 279 - 298
Hlavní autori: Sadollah, Ali, Eskandar, Hadi, Kim, Joong Hoon
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier B.V 01.02.2015
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ISSN:1568-4946, 1872-9681
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Shrnutí:•Multi-objective water cycle algorithm (MOWCA) is proposed for solving constrained and engineering multi-objective problems.•Generational distance, metric of spread, and Δ metric are used as performance criteria.•Optimal Pareto fronts are finely covered by the MOWCA with a good distribution of the non-dominated solutions.•MOWCA is able to approach a full optimal Pareto front and provide a superior quality of solutions.•MOWCA is better able to find a wider range of solutions compared with the other optimizers in this paper. In this paper, a metaheuristic optimizer, the multi-objective water cycle algorithm (MOWCA), is presented for solving constrained multi-objective problems. The MOWCA is based on emulation of the water cycle process in nature. In this study, a set of non-dominated solutions obtained by the proposed algorithm is kept in an archive to be used to display the exploratory capability of the MOWCA as compared to other efficient methods in the literature. Moreover, to make a comprehensive assessment about the robustness and efficiency of the proposed algorithm, the obtained optimization results are also compared with other widely used optimizers for constrained and engineering design problems. The comparisons are carried out using tabular, descriptive, and graphical presentations.
ISSN:1568-4946
1872-9681
DOI:10.1016/j.asoc.2014.10.042