首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Optimization design of unitized panels with stiffeners in different formats using the evolutionary strategy with covariance matrix adaptation
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Optimization design of unitized panels with stiffeners in different formats using the evolutionary strategy with covariance matrix adaptation

机译:带有协方差矩阵自适应的进化策略对不同形式的加劲肋组合板的优化设计

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摘要

Curvilinear stiffener concept has been introduced to aircraft panel structures most recently for possible further weight reduction during optimization design. However, due to enlarged design space and high design complexity, more computational time is needed to optimize curvilinearly stiffened panels. Considering the requirement for both lighter structure and less design time, optimization designs of a unitized panel with stiffeners in three different formats, i.e. curvilinear, oblique, and evenly distributed straight, are conducted under various loading conditions to figure out which stiffener format should be selected in a real design environment. Four single loading cases with different compression-shear ratios and a set of multiple load cases are considered. Evolution strategy with covariance matrix adaption is combined with sequential quadratic programming to seek out the optimum structure with minimum mass taking into account buckling and strength constraints. Comparative analysis of the optimization results indicates that evenly distributed straight format is suitable for compression-dominant loading conditions whereas curvilinear format become superior in case that shear loading is considerable or multiple biaxial compression and shear loads are applied. Besides, curvilinear format adds more design flexibilities to the stiffeners, which enables them to play a more important role in the optimized structures. Furthermore, evolution strategy with covariance matrix adaption is found to be more efficient than particle swarm optimization for this optimization problem. This study can provide a useful guidance for future optimization design of aircraft structures.
机译:最近在飞机面板结构中引入了曲线加劲肋的概念,以在优化设计过程中进一步减轻重量。然而,由于扩大的设计空间和高的设计复杂性,需要更多的计算时间来优化曲线加劲板。考虑到对更轻的结构和更少的设计时间的要求,在各种载荷条件下进行了具有三种不同形式的加劲肋的组合面板的优化设计,即曲线,倾斜和均匀分布的笔直,以确定应该选择哪种加劲肋格式在真实的设计环境中。考虑具有不同压缩-剪切比的四个单载荷工况和一组多个载荷工况。将具有协方差矩阵自适应的演化策略与顺序二次规划相结合,以在考虑到屈曲和强度约束的情况下以最小质量找到最佳结构。对优化结果的比较分析表明,均匀分布的直线形式适用于以压缩力为主的载荷条件,而曲线形式在剪切载荷相当大或应用了多个双轴压缩和剪切载荷的情况下更为优越。此外,曲线形式为加劲肋增加了更多的设计灵活性,从而使它们在优化的结构中可以发挥更重要的作用。此外,对于该优化问题,发现具有协方差矩阵自适应的进化策略比粒子群优化更有效。该研究可以为飞机结构的未来优化设计提供有益的指导。

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