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Structural Weight Optimization with Tabu Search

机译:禁忌搜索优化结构权重

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摘要

Optimization of structural weight is of particular importance for construction in space, moon, or mars since transportation of the structural elements to these sites is very costly. An optimized structure that satisfies the design requirements while utilizing minimum amount of material is especially suitable for construction in such remote areas and can result in significant savings in transportation costs. The Tabu Search method, a heuristic search technique, was selected for application to the structural weight optimization of skeleton structures. Further, a computer program was developed that uses Tabu Search for weight minimization of two-dimensional framed structures performing search, structural analysis, and structural design in an iterative manner. The program was used to optimize the weight of several frames of varying height including 3-story/3-bay, 9-story/5-bay, and 20-story/5-bay steel moment resisting frames. These frames had previously been designed to resist vertical and lateral loads. The same loads were used for the optimized weight design using the Tabu Search program. To improve efficiency of the method, several searches were performed with different search parameters and the duration of search was increased if needed. The program demonstrated its capability of optimizing the weight of these frames in a reasonable amount of time without requiring engineer interface during the search process. The search procedure was able to reduce the structural weight of these frames by 26.4%, 18.3%, and 25.5% respectively compared to their original design weights.
机译:结构重量的优化对于在太空,月球或火星上的建造特别重要,因为将结构元件运输到这些地点的成本非常高。在使用最少材料的同时满足设计要求的优化结构特别适合在此类偏远地区进行施工,并可以显着节省运输成本。选择禁忌搜索法,一种启发式搜索技术,将其应用于骨架结构的结构权重优化。此外,开发了一种计算机程序,该计算机程序使用禁忌搜索来最小化二维框架结构的重量,从而以迭代方式执行搜索,结构分析和结构设计。该程序用于优化几个不同高度的框架的重量,包括3层/ 3层,9层/ 5层和20层/ 5层的抗弯钢框架。这些框架以前被设计为抵抗垂直和横向载荷。使用禁忌搜索程序,将相同的载荷用于优化重量设计。为了提高该方法的效率,使用不同的搜索参数执行了几次搜索,并在需要时增加了搜索时间。该程序展示了其在合理的时间内优化这些帧的权重的能力,而在搜索过程中无需工程师界面。与原始设计重量相比,搜索程序能够将这些框架的结构重量分别减少26.4%,18.3%和25.5%。

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