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Multidisciplinary Aircraft Conceptual Design Optimisation Using a Hierarchical Asynchronous Parallel Evolutionary Algorithm (HAPEA)

机译:多学科飞机概念设计优化使用分层异步并行进化算法(HAPEA)

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In this paper we present some results of continuing research into improving robustness speed and application of Hierarchical Parallel Asynchronous Evolution Algorithms (HAPEA) to multidisciplinary design optimisation (MDO) and aircraft conceptual design problems. The formulation and implementation of the HAPEA-MDO algorithm is described and can be regarded as an architecture that is applicable to either integrated or distributed system optimisation design for complex, non-linear and non-differentiable problems. In this paper the formulation for HAPEA-MDO will be described and applied to single and multi objective MDO problems. Two cases related to aircraft design are analysed. We compute the Nash and Pareto optimal configurations satisfying the specified criteria in both cases and show that the HAPEA approach provides very efficient solutions to the stated design problems.
机译:在本文中,我们展示了持续研究改善分层平行异步演化算法(HAPEA)到多学科设计优化(MDO)和飞机概念设计问题的鲁棒性速度和应用的结果。描述了Hapea-MDO算法的制定和实现,可以被视为适用于集成或分布式系统优化设计的架构,用于复杂,非线性和不可差异的问题。在本文中,将描述Hapea-MDO的制剂,并应用于单一的单目标MDO问题。分析了与飞机设计相关的两种情况。我们计算若干案例中的指定标准的纳什和帕累托最优配置,并显示HAPEA方法为所述设计问题提供了非常有效的解决方案。

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