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Ant colony optimisation-based multiobjective frame design under seismic conditions

机译:基于蚁群优化的抗震条件下的多目标框架设计

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Ordinary moment-resisting frames are studied for multiobjective design under seismic loading, using the ant colony optimisation method. The objective function contains minimisation of the total weight as well as the corresponding seismic base shear. The modal spectral method is applied for the analysis of ordinary moment-resisting frames. The structure is under strength and serviceability constraints, enforced by penalty functions. All design requirements correspond to uniform building code (UBC) and American Institute of Steel Construction allowable stress design codes of practice. The frame sections are selected from the standard set of American Institute of Steel Construction W-shapes. A new type of initial pheromone depositing is introduced in the ant colony optimisation. Also, to enable improvements on the results, a novel local search is developed and applied to moment frames. For the purpose of comparison, a genetic algorithm is applied to the same problems.
机译:使用蚁群优化方法研究了普通的力矩抵抗框架,用于在地震载荷下进行多目标设计。目标函数含有总重量以及相应的地震底剪的最小化。模态光谱法应用于普通力矩抵抗框架的分析。该结构处于强度和可维护性约束,由惩罚函数执行。所有设计要求对应于统一的建筑码(UBC)和美国钢结构施工研究所允许应力设计守则的实践守则。框架部分选自美国钢结构研究所的标准组。在蚁群优化中引入了一种新型的初始信息素沉积。此外,为了能够改进结果,开发了一种新的本地搜索并应用于时刻帧。出于比较的目的,遗传算法应用于同一问题。

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