稳健性(进化)
水准点(测量)
流离失所(心理学)
非线性系统
结构工程
数学优化
工程类
缩小
优化算法
稳健优化
非线性规划
最优化问题
计算机科学
多目标优化
算法
灵敏度(控制系统)
约束优化
抗震
作者
Song Ling Han,Yu Chen,Binbin Huang,Gaoxing Hu,Chao Wang
标识
DOI:10.6084/m9.figshare.31027967
摘要
This article proposes for the first time a multi-modal optimization design method for the seismic resistance of steel structures, focusing on minimizing inter-storey displacement angle and exploring various steel structure combinations to achieve optimal solutions. To cope with challenges, this article employs a novel multi-modal meta-heuristic algorithm incorporating a local search strategy as delineated in pbestmutation into the red-billed blue magpie optimizer. The optimization objective is to minimize the average of the maximum inter-storey drift of a structure subjected to three seismic intensity levels, based on nonlinear time-history analyses using Matlab® OpenSees, while ensuring compliance with strength, displacement and mass constraints of ASCE 7-16. To assess the efficacy of the algorithm, tests are conducted on 20 widely recognized multi-modal benchmark problems, showcasing its competitive superiority against existing algorithms. The capabilities and robustness of the algorithm are further examined through three case studies involving seismic-resistant steel-frame design.
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