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首页> 外文期刊>Aerospace science and technology >Overview of Gaussian process based multi-fidelity techniques with variable relationship between fidelities, application to aerospace systems
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Overview of Gaussian process based multi-fidelity techniques with variable relationship between fidelities, application to aerospace systems

机译:基于高斯过程的多保真技术概述,保真度的可变关系,应用于航空航天系统

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摘要

The design process of complex systems such as new configurations of aircraft or launch vehicles is usually decomposed in different phases which are characterized by the depth of the analyses in terms of number of design variables and fidelity of the physical models. At each phase, the designers have to deal with accurate but computationally intensive models as well as cheap but inaccurate models. Multi-fidelity modeling is a way to merge different fidelity models to provide engineers with accurate results with a limited computational cost. Within the context of multi-fidelity modeling, approaches based on Gaussian Processes emerge as popular techniques to fuse information between the different fidelity models. The relationship between the fidelity models is a key aspect in multi-fidelity modeling. This paper provides an overview of Gaussian process-based multi-fidelity modeling techniques for variable relationship between the fidelity models (e.g., linearity, non-linearity, variable correlation). Each technique is described within a unified framework and the links between the different techniques are highlighted. All approaches are numerically compared on a series of analytical test cases and four aerospace related engineering problems in order to assess their benefits and disadvantages with respect to the problem characteristics. (c) 2020 Elsevier Masson SAS. All rights reserved.
机译:复杂系统的设计过程,例如飞机或发射车辆的新配置通常在不同的阶段中分解,其特征在于在物理模型的设计变量和保真度方面的分析深度。在每个阶段,设计人员必须处理准确但计算密集型模型,也可以廉价但不准确的模型。多保真建模是合并不同保真模型的方法,以便为工程师提供有限的计算成本。在多保真建模的背景下,基于高斯过程的方法出现了作为融合不同保真模型之间的融合信息的流行技术。保真模型之间的关系是多保真建模的关键方面。本文概述了基于高斯工艺的多保真建模技术,用于待遇模型(例如线性,非线性,可变相关之间的可变关系。在统一的框架内描述了每个技术,并且突出显示不同技术之间的链路。所有方法都在数量的分析测试用例和四个航空航天相关工程问题上进行了数量比较,以便在问题特征上评估其利益和缺点。 (c)2020 Elsevier Masson SAS。版权所有。

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