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Global/Local Iteration for Blended Composite Laminate Panel Structure Optimization Subproblems

机译:混合复合层压板结构优化子问题的全局/局部迭代

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Composite panel structure optimization is commonly decomposed into panel optimization subproblems. Previous work applied a guide based design approach to the problem for a structure where the local loads were assumed to be fixed for each panel throughout the design process. This paper examines the application of guide based design to a more realistic representation of the structure where the local loads for each panel are determined through a global level analysis that is coupled with the stacking sequence for every design panel. A small problem is selected for which an exhaustive search of the subproblem design space verifies the optimality of the solution found through the global/local iteration process introduced in this work. The efficient discovery of solutions to these guide based design subproblems creates an opportunity to incorporate the solutions into a global level optimization process. A parallel genetic algorithm is proposed to control global optimization in which evaluating the fitness of each member of the population requires the solution of a guide based design subproblem where parallelism is solely within fitness evaluations.
机译:复合面板结构优化通常被分解成面板优化子问题。以前的工作应用了基于指南的设计方法,以解决在整个设计过程中为每个面板固定本地负载的结构的问题。本文介绍了基于指南的设计将引导设计应用于每个面板的本​​地负载的更现实的表示,通过全局级别分析与每个设计面板的堆叠序列耦合。选择了一个小问题,为此,省略了对子发布设计空间的详尽搜索,验证了通过本工作中引入的全局/本地迭代过程中发现的解决方案的最优性。对基于指南的设计子问题的有效发现解决方案创建了将解决方案纳入全球级优化过程的机会。提出了一种平行的遗传算法来控制全局优化,其中评估人口的每个成员的适应度需要解决基于指南的设计子问题,并行地仅在适应性评估内。

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