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Optimization of steel structures with one genetic algorithm according to three international building codes
Author(s) -
María-Belén Prendes-Gero,
A. Bello-García,
Juan-José del Coz-Díaz,
Francisco-José Suárez-Domínguez,
Paulino-José García Nieto
Publication year - 2018
Publication title -
revista de la construcción
Language(s) - English
Resource type - Journals
eISSN - 0718-915X
pISSN - 0717-7925
DOI - 10.7764/rdlc.17.1.47
Subject(s) - flexibility (engineering) , constraint (computer aided design) , code (set theory) , process (computing) , building code , function (biology) , computer science , genetic algorithm , simplicity , range (aeronautics) , mathematical optimization , algorithm , engineering , structural engineering , mathematics , mechanical engineering , programming language , statistics , philosophy , set (abstract data type) , epistemology , evolutionary biology , biology , aerospace engineering
Among all the optimization techniques, the genetic algorithms (GAs) stand out because of their mathematical simplicity, the no necessity of information about the objective function or the constraint functions, and the possibility of working with any type of structure. Although these features suggest an enormous flexibility for working with different building codes, in general, each one is developed for a particular structure and a particular building code. In a world without borders, where one structure can be calculated in one country, manufactured in other and built in a third one, develop one GA for each building code difficult the construction process and increase its cost. In this paper, one GA capable of working with three different building codes (Spanish, European and American) is researched. After analysing the different constraints and stabilities for them, the objective function is defined. Then, and due the influence that the working parameters have in the optimization result, the effect of each parameter over the behaviour of the GA is analysed and a working range for them is established. Finally, the results of the optimization are compared, showing the heaviest structures with the American code and the lightest structures with the European code.

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