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A Two-Level Procedure for the Global Optimum Design of Composite Modular Structures—Application to the Design of an Aircraft Wing

机译:组合模块化结构全局最优设计的两级程序—在飞机机翼设计中的应用

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This work concerns a two-level procedure for the global optimum design of composite modular structures. The case-study considered is the least weight design of a stiffened wing-box for an aircraft structure. The method is based on the use of the polar formalism and on a genetic algorithm. In the first level of the procedure, the optimal structure is designed as composed by a single equivalent layer, while a laminate realizing the optimal structure is found in the second level. The method is able to automatically find the optimal number of modules; no simplifying assumptions are used and it can be easily generalized to other problems. The work is divided into two parts: the theoretical formulation in the first part, the genetic procedure and some numerical examples in this second one.
机译:这项工作涉及复合模块结构的全局最优设计的两级过程。考虑的案例研究是用于飞机结构的加固机翼盒的最小重量设计。该方法基于极性形式主义的使用和遗传算法。在该过程的第一级中,将最佳结构设计为由单个等效层组成,而在第二级中找到实现最佳结构的层压板。该方法能够自动找到最佳数量的模块。没有使用简化的假设,并且可以很容易地将其推广到其他问题。这项工作分为两部分:第一部分的理论表述,遗传过程和第二部分的一些数值例子。

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