离散变量模拟退火桁架优化

Bao-wei Xiang, Rong-qin Chen, Zhang Tao
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引用次数: 7

摘要

将模拟退火(SA)算法应用于桁架的离散结构优化。本文从初始温度的确定、解的生成和接受、增加一个记录仪以及基于新定义的相对精度的收敛准则等方面对SA算法的基本步骤进行了改进。采用多目标布局,将离散优化与连续优化相结合。通过大量的试验研究了随机种子数和马尔可夫链等重要的算法控制参数。这些改进和研究提高了SA算法在结构设计优化问题中的鲁棒性、效率和准确性。利用改进的SA算法求解了一定数量的传统和比较复杂的200-bar问题,并与文献中的相关实例进行了比较。数值结果表明,本文改进的SA算法具有较高的求解精度,求解效率明显提高。希望将SA算法应用于结构设计优化中,充分发挥其优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of trusses using simulated annealing for discrete variables
The simulated annealing (SA) algorithm is applied to the discrete structural optimization of trusses. Some approaches have been proposed to improved the basic procedures of the SA algorithm, such as the determination of initial temprature, the generation and acceptance of solutions, a recorder added, and the converage criterrion based on a newly defined relative precision. By using a multi-objective layout, the discrete optimization is combined with the continuous optizimation. The important algorithm control parameters, such as the number of random seeds and Markovian chain, are studied carefully by numerous tests. These improvements and studies have enhnced the robustness, efficiency and accuracy of the SA algorithm in the structural design optimazation problems. A certain number of traditional and a relatively complicated 200-bar problems are solved with the improved SA algorithm and compared with related examples in literatures. The numerical results have demonstrated that the improved SA algorithm of this paper has high-solution precision, and its solution efficiency has noticeably increased. It is hoped the SA algorithm can be applied in structural design optimization to make use of its advantages.
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