A search algorithm for constrained engineering optimization and tuning the gains of controllers
•A search algorithm is investigated as an optimization method.•The proposed approach covers static, constrained, and dynamic problems.•The search algorithm is based on random solutions in all generations.•Proof of stochastic mechanisms of the method’s core algorithm is provided. In this work, the ap...
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| Published in | Expert systems with applications Vol. 206; p. 117866 |
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| Main Authors | , , |
| Format | Journal Article |
| Language | English |
| Published |
Elsevier Ltd
15.11.2022
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| Online Access | Get full text |
| ISSN | 0957-4174 1873-6793 1873-6793 |
| DOI | 10.1016/j.eswa.2022.117866 |
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| Abstract | •A search algorithm is investigated as an optimization method.•The proposed approach covers static, constrained, and dynamic problems.•The search algorithm is based on random solutions in all generations.•Proof of stochastic mechanisms of the method’s core algorithm is provided.
In this work, the application of an optimization algorithm is investigated to optimize static and dynamic engineering problems. The methodology of the approach is to generate random solutions and find a zone for the initial answer and keep reducing the zones. The generated solution in each loop is independent of the previous answer that creates a powerful method. Simplicity as its main advantage and the interlaced use of intensification and diversification mechanisms--to refine the solution and avoid local minima/maxima--enable the users to apply that for a variety of problems. The proposed approach has been validated by several previously solved examples in structural optimization and scored good results. The method is also employed for dynamic problems in vibration and control. A modification has also been done on the method for high-dimensional test functions (functions with very large search domains) to converge fast to the global minimum or maximum; simulated for several well-known benchmarks successfully. For validation, a number of 9 static and 4 dynamic constrained optimization benchmark applications and 32 benchmark test functions are solved and provided, 45 in total. All the codes of this work are available as supplementary material in the online version of the paper on the journal website. |
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| AbstractList | •A search algorithm is investigated as an optimization method.•The proposed approach covers static, constrained, and dynamic problems.•The search algorithm is based on random solutions in all generations.•Proof of stochastic mechanisms of the method’s core algorithm is provided.
In this work, the application of an optimization algorithm is investigated to optimize static and dynamic engineering problems. The methodology of the approach is to generate random solutions and find a zone for the initial answer and keep reducing the zones. The generated solution in each loop is independent of the previous answer that creates a powerful method. Simplicity as its main advantage and the interlaced use of intensification and diversification mechanisms--to refine the solution and avoid local minima/maxima--enable the users to apply that for a variety of problems. The proposed approach has been validated by several previously solved examples in structural optimization and scored good results. The method is also employed for dynamic problems in vibration and control. A modification has also been done on the method for high-dimensional test functions (functions with very large search domains) to converge fast to the global minimum or maximum; simulated for several well-known benchmarks successfully. For validation, a number of 9 static and 4 dynamic constrained optimization benchmark applications and 32 benchmark test functions are solved and provided, 45 in total. All the codes of this work are available as supplementary material in the online version of the paper on the journal website. |
| ArticleNumber | 117866 |
| Author | Acosta, José Ángel Ollero, Anibal Nekoo, Saeed Rafee |
| Author_xml | – sequence: 1 givenname: Saeed Rafee surname: Nekoo fullname: Nekoo, Saeed Rafee email: saerafee@yahoo.com – sequence: 2 givenname: José Ángel surname: Acosta fullname: Acosta, José Ángel – sequence: 3 givenname: Anibal surname: Ollero fullname: Ollero, Anibal |
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10.1016/j.eswa.2022.117866_b0180 article-title: Constrained optimization via genetic algorithms publication-title: Simulation doi: 10.1177/003754979406200405 – year: 2019 ident: 10.1016/j.eswa.2022.117866_b0355 – volume: 34 start-page: 341 issue: 4 year: 2002 ident: 10.1016/j.eswa.2022.117866_b0020 article-title: A socio-behavioural simulation model for engineering design optimization publication-title: Engineering Optimization doi: 10.1080/03052150212723 – year: 2019 ident: 10.1016/j.eswa.2022.117866_b0255 article-title: A simple model for gliding and low-amplitude flapping flight of a bio-inspired UAV |
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| Title | A search algorithm for constrained engineering optimization and tuning the gains of controllers |
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