Optimum structural design of full-scale steel buildings using drift-tribe-charged system search

In this paper, the potential of utilizing improved metaheuristic approaches in optimal design of building structures is concerned. In this regard, the drift-tribe-charged system search algorithm is proposed that the position and velocity updating processes of the charged system search is developed b...

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Veröffentlicht in:Earthquake Engineering and Engineering Vibration Jg. 21; H. 3; S. 825 - 842
Hauptverfasser: Talatahari, Siamak, Veladi, Hedayat, Azizi, Mahdi, Moutabi-Alavi, Ali, Rahnema, Salar
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.07.2022
Springer Nature B.V
Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran
Faculty of Engineering and Information Technology,University of Technology Sydney,Ultimo,NSW 2007,Australia%Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran
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ISSN:1671-3664, 1993-503X
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Abstract In this paper, the potential of utilizing improved metaheuristic approaches in optimal design of building structures is concerned. In this regard, the drift-tribe-charged system search algorithm is proposed that the position and velocity updating processes of the charged system search is developed by implementing the mathematical presentation of the free-electron model utilized for metal conductors. In addition, the searching phase of the developed algorithm is also divided into three separate phases in order to improve the convergence capability of the algorithm. By means of these modifications, the exploitation and exploration rates of the standard algorithm are enhanced. In order to determine the ability of the proposed improved metaheuristic method considering some complex optimization problems, a 10-story steel building structure with 1026 structural members alongside a 60-story structure with 8272 members are utilized as numerical examples. The overall capability of the developed metaheuristic approach is compared with other metaheuristics. A total number of 30 independent runs have been conducted for each of the standard and proposed methods while a statistical analysis is also conducted for comparative purposes. The obtained optimum results demonstrated that the proposed metaheuristic approach is capable of preparing better outcomes than other metaheuristics.
AbstractList In this paper, the potential of utilizing improved metaheuristic approaches in optimal design of building structures is concerned. In this regard, the drift-tribe-charged system search algorithm is proposed that the position and velocity updating processes of the charged system search is developed by implementing the mathematical presentation of the free-electron model utilized for metal conductors. In addition, the searching phase of the developed algorithm is also divided into three separate phases in order to improve the convergence capability of the algorithm. By means of these modifications, the exploitation and exploration rates of the standard algorithm are enhanced. In order to determine the ability of the proposed improved metaheuristic method considering some complex optimization problems, a 10-story steel building structure with 1026 structural members alongside a 60-story structure with 8272 members are utilized as numerical examples. The overall capability of the developed metaheuristic approach is compared with other metaheuristics. A total number of 30 independent runs have been conducted for each of the standard and proposed methods while a statistical analysis is also conducted for comparative purposes. The obtained optimum results demonstrated that the proposed metaheuristic approach is capable of preparing better outcomes than other metaheuristics.
Author Moutabi-Alavi, Ali
Azizi, Mahdi
Rahnema, Salar
Veladi, Hedayat
Talatahari, Siamak
AuthorAffiliation Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran;Faculty of Engineering and Information Technology,University of Technology Sydney,Ultimo,NSW 2007,Australia%Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran
AuthorAffiliation_xml – name: Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran;Faculty of Engineering and Information Technology,University of Technology Sydney,Ultimo,NSW 2007,Australia%Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran
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  givenname: Hedayat
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  surname: Rahnema
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Issue 3
Keywords full-scale steel building
statistical analysis
drift-tribe-charged system search
optimum structural design
Language English
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PublicationTitle Earthquake Engineering and Engineering Vibration
PublicationTitleAbbrev Earthq. Eng. Eng. Vib
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Springer Nature B.V
Department of Civil Engineering,University of Tabriz,Tabriz 51666,Iran
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A Kaveh (2116_CR19) 2013; 38
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SM Nigdeli (2116_CR43) 2017; 21
A Kaveh (2116_CR21) 2015; 34
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Snippet In this paper, the potential of utilizing improved metaheuristic approaches in optimal design of building structures is concerned. In this regard, the...
In this paper,the potential of utilizing improved metaheuristic approaches in optimal design of building structures is concerned.In this regard,the...
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SubjectTerms Algorithms
Civil Engineering
Conductors
Control
Design
Drift
Dynamical Systems
Earth and Environmental Science
Earth Sciences
Exploitation
Free electrons
Geotechnical Engineering & Applied Earth Sciences
Heuristic methods
Metals
Optimization
Search algorithms
Statistical analysis
Statistical methods
Steel
Steel structures
Structural design
Structural engineering
Structural members
Vibration
Title Optimum structural design of full-scale steel buildings using drift-tribe-charged system search
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