论文标题
可变功能及其应用于大型钢制框架设计优化
Variable Functioning and Its Application to Large Scale Steel Frame Design Optimization
论文作者
论文摘要
为了解决复杂的现实世界问题,可以使用启发式方法和基于概念的方法来将信息纳入问题中。在这项研究中,引入了一种基于概念的方法,称为可变功能FX,以减少优化变量并缩小搜索空间的范围。在这种方法中,在优化之前使用信息来定义一个或多个变量子集之间的关系;因此,优化了函数变量,而不是修改搜索过程中的变量。通过使用问题结构分析技术和工程专家知识,$ FX $方法可用于增强钢制框架设计优化过程作为复杂的现实世界问题。所提出的方法与粒子群优化和差异进化算法结合,并用于三个案例研究。通过考虑柱横截面区域之间的关系,应用算法来优化案例研究。结果表明,即使仅用于播种,$ FX $也可以显着提高框架结构的收敛速率和最终设计。
To solve complex real-world problems, heuristics and concept-based approaches can be used in order to incorporate information into the problem. In this study, a concept-based approach called variable functioning Fx is introduced to reduce the optimization variables and narrow down the search space. In this method, the relationships among one or more subset of variables are defined with functions using information prior to optimization; thus, instead of modifying the variables in the search process, the function variables are optimized. By using problem structure analysis technique and engineering expert knowledge, the $Fx$ method is used to enhance the steel frame design optimization process as a complex real-world problem. The proposed approach is coupled with particle swarm optimization and differential evolution algorithms and used for three case studies. The algorithms are applied to optimize the case studies by considering the relationships among column cross-section areas. The results show that $Fx$ can significantly improve both the convergence rate and the final design of a frame structure, even if it is only used for seeding.