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MODEL STRUCTURAL INFERENCE USING LOCAL DYNAMIC OPERATORS

机译:模型使用本地动态运算符的结构推断

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This paper focuses on the problem of quantifying the effects of model-structure uncertainty in the context of time-evolving dynamical systems. This is motivated by multi-model uncertainty in computer physics simulations: developers often make different modeling choices in numerical approximations and process simplifications, leading to different numerical codes that ostensibly represent the same underlying dynamics. We consider model-structure inference as a two-step methodology: the first step is to perform system identification on numerical codes for which it is possible to observe the full state; the second step is structural uncertainty quantification, in which the goal is to search candidate models "close" to the numerical code surrogates for those that best match a quantity of interest (QOI) from some empirical data sets. Specifically, we (1) define a discrete, local representation of the structure of a partial differential equation, which we refer to as the "local dynamical operator" (LDO); (2) identify model structure nonintrusively from numerical code output; (3) nonintrusively construct a reduced-order model (ROM) of the numerical model through POD-DEIM-Galerkin projection; (4) perturb the ROM dynamics to approximate the behavior of alternate model structures; and (5) apply Bayesian inference and energy conservation laws to calibrate a LDO to a given QOI. We demonstrate these techniques using the two-dimensional rotating shallow water equations as an example system.
机译:本文侧重于量化模型结构不确定性在时间不断变化的动态系统中的问题的问题。这是通过计算机物理模拟的多模型不确定性的推动:开发人员通常在数值近似和过程简化中进行不同的建模选择,导致外表面代表相同的底层动态的不同数字代码。我们认为模型结构推断为两步方法:第一步是在数值代码上执行系统识别,可以观察到完整状态;第二步骤是结构不确定性量化,其中目标是将候选模型“关闭”搜索到来自一些经验数据集的最佳匹配的兴趣数量(Qoi)的数字代码代构。具体地,我们(1)定义了局部微分方程结构的离散,局部表示,我们将其称为“局部动态运算符”(LDO); (2)从数字代码输出中识别模型结构; (3)通过POD-DEIM-GALERKIN投影,非易地构造数值模型的阶数模型(ROM); (4)扰乱ROM动态以近似备用模型结构的行为; (5)应用贝叶斯推理和节能法律,以校准一个LDO给给定的Qoi。我们使用二维旋转浅水方程作为示例系统来展示这些技术。

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