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首页> 外文期刊>Advances in Engineering Software >Upper bound strategy for metaheuristic based design optimization of steel frames
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Upper bound strategy for metaheuristic based design optimization of steel frames

机译:基于元启发式钢框架设计优化的上限策略

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Optimum design of structural systems based on metaheunstic algorithms suffers from enormously time-consuming structural analyses to locate a reasonable design. In this paper an upper bound strategy (UBS) is proposed for reducing the total number of structural analyses in metaheuristic based design optimization of steel frame structures. The well-known big bang-big crunch algorithm as well as its two enhanced variants are adopted as typical metaheuristic algorithms to evaluate the effect of the UBS on computational efficiency of these techniques. The numerical results reveal that the UBS can significantly lessen the total computational cost in metaheuristic based design optimization of steel frames.
机译:基于超自然算法的结构系统的优化设计要花费大量时间进行结构分析才能找到合理的设计。本文提出了一种上限策略(UBS),以减少基于元启发式的钢框架结构设计中结构分析的总数。典型的元启发式算法采用了著名的大爆炸算法(Big Bang-Big Crunch Algorithm)及其两个增强型变体,以评估UBS对这些技术的计算效率的影响。数值结果表明,在基于超启发式的钢框架设计优化中,UBS可以显着降低总计算成本。

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