Hybrid inner-outer algorithm for solving real-world mechanical optimization problems

Abstract In the real world, the problems mostly are complex; more precisely, the problems generally are nonlinear or large scale other than if it was mandatory to resolve it under certain constraints, and that is common in engineering design problems. Therefore, the complexity of problem plays a cri...

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Autores principales: Omnia Osman Fadel Abouhabaga, Mohamed Hassan Gadallah, Hanan Kamel Kouta, Mohamed Abass Zaghloul
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Lenguaje:EN
Publicado: SpringerOpen 2021
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Acceso en línea:https://doaj.org/article/cac05aee9b0048c481e7de6a23aa34e6
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spelling oai:doaj.org-article:cac05aee9b0048c481e7de6a23aa34e62021-11-14T12:16:29ZHybrid inner-outer algorithm for solving real-world mechanical optimization problems10.1186/s44147-021-00004-01110-19032536-9512https://doaj.org/article/cac05aee9b0048c481e7de6a23aa34e62021-07-01T00:00:00Zhttps://doi.org/10.1186/s44147-021-00004-0https://doaj.org/toc/1110-1903https://doaj.org/toc/2536-9512Abstract In the real world, the problems mostly are complex; more precisely, the problems generally are nonlinear or large scale other than if it was mandatory to resolve it under certain constraints, and that is common in engineering design problems. Therefore, the complexity of problem plays a critical role in determining the computational time and cost. Accordingly, a novel algorithm called inner-outer array is proposed in this paper. It depends on the design of parameters and then tolerance design as one of design of experiment stages. In this work, the inner-outer algorithm is used to solve real-world optimization problems to choose the preferable feasible regions of the entire search domain. Numerical results are documented and compared based on four well-known constrained mechanical engineering issues. It can be concluded that the performance of inner-outer algorithm is good to optimize constrained engineering problems, but it still needs some enhancements in the future work.Omnia Osman Fadel AbouhabagaMohamed Hassan GadallahHanan Kamel KoutaMohamed Abass ZaghloulSpringerOpenarticleInner-outer arrayConstrained optimizationengineering design problemsHybrid algorithmsEngineering (General). Civil engineering (General)TA1-2040ENJournal of Engineering and Applied Science, Vol 68, Iss 1, Pp 1-18 (2021)
institution DOAJ
collection DOAJ
language EN
topic Inner-outer array
Constrained optimization
engineering design problems
Hybrid algorithms
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Inner-outer array
Constrained optimization
engineering design problems
Hybrid algorithms
Engineering (General). Civil engineering (General)
TA1-2040
Omnia Osman Fadel Abouhabaga
Mohamed Hassan Gadallah
Hanan Kamel Kouta
Mohamed Abass Zaghloul
Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
description Abstract In the real world, the problems mostly are complex; more precisely, the problems generally are nonlinear or large scale other than if it was mandatory to resolve it under certain constraints, and that is common in engineering design problems. Therefore, the complexity of problem plays a critical role in determining the computational time and cost. Accordingly, a novel algorithm called inner-outer array is proposed in this paper. It depends on the design of parameters and then tolerance design as one of design of experiment stages. In this work, the inner-outer algorithm is used to solve real-world optimization problems to choose the preferable feasible regions of the entire search domain. Numerical results are documented and compared based on four well-known constrained mechanical engineering issues. It can be concluded that the performance of inner-outer algorithm is good to optimize constrained engineering problems, but it still needs some enhancements in the future work.
format article
author Omnia Osman Fadel Abouhabaga
Mohamed Hassan Gadallah
Hanan Kamel Kouta
Mohamed Abass Zaghloul
author_facet Omnia Osman Fadel Abouhabaga
Mohamed Hassan Gadallah
Hanan Kamel Kouta
Mohamed Abass Zaghloul
author_sort Omnia Osman Fadel Abouhabaga
title Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
title_short Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
title_full Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
title_fullStr Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
title_full_unstemmed Hybrid inner-outer algorithm for solving real-world mechanical optimization problems
title_sort hybrid inner-outer algorithm for solving real-world mechanical optimization problems
publisher SpringerOpen
publishDate 2021
url https://doaj.org/article/cac05aee9b0048c481e7de6a23aa34e6
work_keys_str_mv AT omniaosmanfadelabouhabaga hybridinnerouteralgorithmforsolvingrealworldmechanicaloptimizationproblems
AT mohamedhassangadallah hybridinnerouteralgorithmforsolvingrealworldmechanicaloptimizationproblems
AT hanankamelkouta hybridinnerouteralgorithmforsolvingrealworldmechanicaloptimizationproblems
AT mohamedabasszaghloul hybridinnerouteralgorithmforsolvingrealworldmechanicaloptimizationproblems
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