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Minimum-weight design of non-linear steel frames using combinatorial optimization algorithms

机译:基于组合优化算法的非线性钢框架最小重量设计

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摘要

Two combinatorial optimization algorithms, tabu search and simulated annealing, are presented for the minimum-weight design of geometrically non-linear steel plane frames. The design algorithms obtain minimum weight frames by selecting suitable sections from a standard set of steel sections such as American Institute of Steel Construction (AISC) wide-flange (W) shapes. Stress constraints of AISC Load and Resistance Factor Design (LRFD) specification, maximum and interstorey drift constraints and size constraints for columns were imposed on frames. The stress constraints of AISC Allowable Stress Design (ASD) were also mounted in the two algorithms. The comparisons between AISC-LRFD and AISC-ASD specifications were also made while tabu search and simulate'd annealing were used separately. The algorithms were applied to the optimum design of three frame structures. The designs obtained using tabu search were compared to those where simulated annealing was considered. The comparisons showed that the tabu search algorithm yielded better designs with AISC-LRFD code specification.
机译:针对几何非线性钢平面框架的最小重量设计,提出了两种组合优化算法,禁忌搜索和模拟退火。设计算法通过从一组标准的钢截面中选择合适的截面来获得最小重量的框架,例如美国钢结构学会(AISC)宽法兰(W)形状。将AISC荷载和阻力因子设计(LRFD)规范的应力约束,最大和层间漂移约束以及列的大小约束施加到框架上。两种算法还设置了AISC允许应力设计(ASD)的应力约束。在分别使用禁忌搜索和模拟退火的同时,还对AISC-LRFD和AISC-ASD规范进行了比较。该算法被应用于三个框架结构的优化设计。使用禁忌搜索获得的设计与考虑模拟退火的设计进行了比较。比较表明,禁忌搜索算法在AISC-LRFD代码规范下产生了更好的设计。

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