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Discrete sizing optimization of steel trusses under multiple displacement constraints and load cases using guided stochastic search technique

机译:导向随机搜索技术在多位移约束和荷载工况下钢桁架离散化优化

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摘要

The guided stochastic search (GSS) is a computationally efficient design optimization technique, which is originally developed for discrete sizing optimization problems of steel trusses with a single displacement constraint under a single load case. The present study aims to investigate the GSS in a more general class of truss sizing optimization problems subject to multiple displacement constraints and load cases. To this end, enhancements of the GSS are proposed in the form of two alternative approaches that enable the technique to deal with multiple displacement/load cases. The first approach implements a methodology in which the most critical displacement direction is considered only when guiding the search process. The second approach, however, takes into account the cumulative effect of all the critical displacement directions in the course of optimization. Advantage of the integrated force method of structural analysis is also utilized for further reduction of the computational effort in these approaches. The proposed enhancements of GSS are investigated and compared with some selected techniques of design optimization through six truss structures that are sized for minimum weight. The numerical results reveal that both enhancements generally provide promising solutions with an insignificant computational effort.
机译:引导随机搜索(GSS)是一种计算效率高的设计优化技术,最初是为在单个载荷情况下具有单个位移约束的钢桁架的离散尺寸优化问题而开发的。本研究旨在研究受多种位移约束和载荷作用的更通用的桁架尺寸优化问题中的GSS。为此,以两种替代方法的形式提出了GSS的增强方案,这使该技术能够处理多种位移/载荷情况。第一种方法实现了一种方法,其中仅在指导搜索过程时才考虑最关键的位移方向。但是,第二种方法考虑了优化过程中所有关键位移方向的累积影响。结构分析的综合力方法的优势还被用于进一步减少这些方法中的计算量。对GSS的建议增强功能进行了调查,并与通过六种尺寸最小的桁架结构进行设计优化的选定技术进行了比较。数值结果表明,这两种增强通常以微不足道的计算工作即可提供有希望的解决方案。

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