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An adaptive hierarchical optimization approach for the minimum compliance design of variable stiffness laminates using lamination parameters

机译:使用层压参数的可变刚度层压板最小合规性设计的自适应分层优化方法

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摘要

This paper presents an adaptive hierarchical optimization approach to optimize the lamination parameter distribution of variable-stiffness laminated plate with truncated hierarchical B-Splines. Traditional methods use a uniform grid to design the distribution though its variation rate could change dramatically from point to point. As a consequence, the dense grid incurs a high computation cost while the rough one loses the design freedom. The main motivation of this research is to resolve this problem by performing a hierarchy of the optimizations respectively on different level grids of the hierarchical B-Spline for a non-uniform representation of lamination parameters. At the end of each level optimization, some elements in the multi-level grid are selected to be refined further according to a refinement rule. The hierarchical mesh consisting of newly generated elements and unrefined ones, is used to represent the solution, and its corresponding hierarchical B-Spline expression is updated with a new optimization step. Based on the sensitivity analysis approach proposed for the adaptive optimization problem, the sequential quadratic programming algorithm is implemented for the optimizations at individual levels. Finally, three examples of compliance minimization are chosen to validate the efficiency and accuracy of the proposed method.
机译:本文介绍了一种自适应分层优化方法,以优化具有截短的等级B样条的可变刚度层压板的层压参数分布。传统方法使用均匀的网格来设计分布,尽管其变化率可能从点到点急剧变化。因此,密集的网格在粗糙的一个损失设计自由时会产生高计算成本。该研究的主要动机是通过分别对分层B样条的不同级网格进行优化的层次进行分别来解决这个问题,用于叠层参数的不均匀表示。在每个级别优化的末尾,根据细化规则,选择多级网格中的一些元素进行精制。由新生成的元素和未精制的分层网格用于表示解决方案,并且其对应的分层B样条表达式以新的优化步骤更新。基于所提出的自适应优化问题所提出的灵敏度分析方法,在各个级别的优化实现了顺序二次编程算法。最后,选择三个合规性最小化的示例以验证所提出的方法的效率和准确性。

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