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Aircraft Design Optimization

机译:飞机设计优化

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摘要

In this paper we describe briefly a set of procedures for the optimal design of full mission aerospace systems. This involves multi-physics simulations at various fidelity levels, surrogates, distributed computing and multi-objective optimization. Low-fidelity analysis is used to populate a database of inputs and outputs of the system simulation and Neural Networks are then designed to generate inexpensive surrogates. Higher fidelity is used only where is warranted and also to do a local exploration after global optimization techniques have been used on the surrogates in order to provide plausible initial values. The ideas are exemplified on a generic supersonic aircraft configuration, where one of the main goals is to reduce the ground sonic boom.
机译:在本文中,我们简要介绍了一套用于全任务航空航天系统优化设计的程序。这涉及不同保真度级别的多物理场模拟,替代,分布式计算和多目标优化。低保真度分析用于填充系统仿真的输入和输出数据库,然后将神经网络设计为生成廉价的替代物。只有在有保证的情况下才使用更高的保真度,并且在对代理人使用全局优化技术以提供合理的初始值之后,还要进行局部探索。这些想法在通用的超音速飞机配置中得到了体现,其主要目标之一是减少地面音爆。

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