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A modified elitist genetic algorithm applied to the design optimization of complex steel structures

机译:改进的精英遗传算法在复杂钢结构设计优化中的应用

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This paper shows the implementation of an elitist genetic algorithm that, when applied to steel structures, is able to obtain structural elements with minimum weight and satisfy the safety factors or coefficients (ultimate limit states) of the applicable building code. To this end, a modified objective function has been defined that considers the constraints established by these coefficients. In addition, the codification of the design variables has been modified so that all of them have the same probability of initial selection; a selection operator has been implemented to consider the dispersion of the individuals within the population as well as a crossover operator that interchanges the sections assigned to the structural elements without their prior modification. The final result is a robust genetic algorithm that is simple from a mathematical point of view and is able to work with complex structures under different load and constraint conditions.
机译:本文展示了一种精英遗传算法的实现,该算法应用于钢结构时,能够获得重量最小且满足适用建筑规范的安全系数或安全系数(最终极限状态)的构件。为此,已经定义了修改的目标函数,其考虑了由这些系数建立的约束。另外,修改了设计变量的编码,使所有变量都有相同的初始选择概率。已经实施了选择算子,以考虑个体在总体中的分散性,以及交叉算子,该算子交换了分配给结构元素的截面而无需对其进行事先修改。最终结果是一个健壮的遗传算法,从数学角度来看它很简单,并且能够在不同的负载和约束条件下处理复杂的结构。

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