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An information theoretic approach to use high-fidelity codes to calibrate low-fidelity codes

机译:一种使用高保真代码校准低保真代码的信息理论方法

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For many simulation models, it can be prohibitively expensive or physically infeasible to obtain a complete set of experimental data to calibrate model parameters. In such cases, one can alternatively employ validated higher-fidelity codes to generate simulated data, which can be used to calibrate the lower-fidelity code. In this paper, we employ an information-theoretic framework to determine the reduction in parameter uncertainty that is obtained by evaluating the high-fidelity code at a specific set of design conditions. These conditions are chosen sequentially, based on the amount of information that they contribute to the low-fidelity model parameters. The goal is to employ Bayesian experimental design techniques to minimize the number of high-fidelity code evaluations required to accurately calibrate the low-fidelity model. We illustrate the performance of this framework using heat and diffusion examples, a 1-D kinetic neutron diffusion equation, and a particle transport model, and include initial results from the integration of the high-fidelity thermal-hydraulics code Hydra-TH with a low-fidelity exponential model for the friction correlation factor. (C) 2016 Elsevier Inc. All rights reserved.
机译:对于许多仿真模型而言,获得用于校准模型参数的完整实验数据集可能过于昂贵或在物理上不可行。在这种情况下,可以选择使用经过验证的较高保真度代码生成模拟数据,该数据可以用于校准较低保真度代码。在本文中,我们采用信息理论框架来确定参数不确定性的降低,该降低是通过在一组特定的设计条件下评估高保真代码而获得的。根据这些条件对低保真模型参数的贡献,依次选择这些条件。目标是采用贝叶斯实验设计技术来最大程度地减少准确校准低保真模型所需的高保真代码评估数量。我们使用热和扩散示例,一维动力学中子扩散方程和粒子传输模型来说明此框架的性能,并包括高保真热工液压代码Hydra-TH与低热值的集成的初步结果。相关系数的高保真指数模型。 (C)2016 Elsevier Inc.保留所有权利。

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