Generation of Pareto optimal solutions for multi-objective optimization problems via a reduced interior-point algorithm

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Abstract

In this paper, a reduced interior-point (RIP) algorithm is introduced to generate a Pareto optimal front for multi-objective constrained optimization (MOCP) problem. A weighted Tchebychev metric approach is used together with achievement scalarizing function approach to convert MOCP problem to a single-objective constrained optimization (SOCO) problem. An active-set technique is used together with a Coleman–Li scaling matrix and a decrease interior-point method to solve SOCO problem. A Matlab implementation of RIP algorithm was used to solve three cases and application. The results showed that the RIP algorithm is promising when compared with well-known algorithms and the computations may be superior relevant for comprehending real-world application problems.

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El-Sobky, B., & Abo-Elnaga, Y. (2018). Generation of Pareto optimal solutions for multi-objective optimization problems via a reduced interior-point algorithm. Journal of Taibah University for Science, 12(5), 514–519. https://doi.org/10.1080/16583655.2018.1494422

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