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首页> 外文期刊>Computer-Aided Civil and Infrastructure Engineering >Optimal Design of Scissor-Link Foldable Structures Using Ant Colony Optimization Algorithm
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Optimal Design of Scissor-Link Foldable Structures Using Ant Colony Optimization Algorithm

机译:基于蚁群算法的剪式可折叠结构优化设计

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摘要

In this article, the Ant Colony Optimization (ACO) algorithm is employed to size optimization of scissor-link foldable structures. The advantage of using ACO lies in the fact that the discrete spaces can be optimized with no complexity. The algorithm selects the optimum cross-sections from the available sections list. Elastic behavior is assumed for the formulation of the problem. In addition to strength constraints, the displacement constraints are considered for design. Here, the displacement method is used for analysis employing a special 3-node beam known as a uniplet. Two design examples are presented to demonstrate the performance of the algorithm.
机译:在本文中,采用蚁群优化(ACO)算法来优化剪式链接可折叠结构的尺寸。使用ACO的优势在于可以无复杂地优化离散空间。该算法从可用截面列表中选择最佳截面。假设问题具有弹性表现。除了强度约束,还考虑了位移约束进行设计。此处,位移法用于使用称为uniplet的特殊3节点束的分析。给出了两个设计实例来演示该算法的性能。

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