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Reliability Analysis of Multidisciplinary System with Spatio-temporal Response using Adaptive Surrogate Modeling

机译:采用自适应代理建模的时空响应多学科系统的可靠性分析

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This paper presents an adaptive surrogate modeling framework for the reliability analysis of a multidisciplinary system with spatio-temporal response. The Kriging surrogate method in conjunction with singular value decomposition is first employed to replace the original computer simulation models in the multidisciplinary system analysis. Due to the limited computational resources, the initial surrogate models may not accurately represent the original computer simulation models, which results in errors in the multidisciplinary reliability analysis (MDRA). To tackle this problem, this paper then develops a method to analyze the effects of surrogate model uncertainty on the results of MDRA. Variability of the system responses over time and space caused by the surrogate model uncertainty is considered during the analysis. Based on uncertainty effect analysis, a new approach is proposed to adaptively allocate the computational resources to train individual disciplinary surrogate models and thus to improve the accuracy of MDRA. A four-step refinement procedure is developed based on the variance-based global sensitivity analysis (GSA) method to determine at what input setting, which discipline, when, and which surrogate model to allocate the computational resources. A hypersonic vehicle panel subjected to hypersonic flow conditions is used to demonstrate the proposed method. The results demonstrate that the proposed adaptive surrogate modeling method is able to efficiently and accurately perform the reliability analysis of a multidisciplinary system with spatio-temporal output.
机译:本文介绍了一种自适应代理建模框架,用于具有时空响应的多学科系统的可靠性分析。首先使用与奇异值分解结合奇异值分解的Kriging替代方法,以更换多学科系统分析中的原始计算机仿真模型。由于计算资源有限,初始代理模型可能无法准确代表原始计算机仿真模型,这导致多学科可靠性分析(MDRA)中的错误。为了解决这个问题,本文开发了一种分析替代模型不确定性对MDRA结果的影响的方法。分析期间考虑了由代理模型不确定性引起的时间和空间的系统响应的可变性。基于不确定性效应分析,建议采用新方法,以便自适应地分配计算资源以培训个别纪律代理模型,从而提高MDRA的准确性。基于基于方差的全局敏感性分析(GSA)方法来开发四步细化程序,以确定在哪些输入设置,哪些纪律,何时以及哪个代理模型分配计算资源。使用过高度流动条件的高超声速车辆面板来证明所提出的方法。结果表明,所提出的自适应替代建模方法能够有效准确地执行时空输出的多学科系统的可靠性分析。

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