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Stabilization of (G)EIM in Presence of Measurement Noise: Application to Nuclear Reactor Physics

机译:存在测量噪声时(G)EIM的稳定化:在核反应堆物理中的应用

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The Empirical Interpolation Method (EIM) and its generalized version (GEIM) can be used to approximate a physical system by combining data measured from the system itself and a reduced model representing the underlying physics. In presence of noise, the good properties of the approach are blurred in the sense that the approximation error no longer converges but even diverges. We propose to address this issue by a least-squares projection with constrains involving some a priori knowledge of the geometry of the manifold formed by all the possible physical states of the system. The efficiency of the approach, which we will call Constrained Stabilized GEIM (CS-GEIM), is illustrated by numerical experiments dealing with the reconstruction of the neutron flux in nuclear reactors. A theoretical justification of the procedure will be presented in future works.
机译:经验插值方法(EIM)及其广义版本(GEIM)可用于通过组合从系统本身测得的数据和代表基础物理的简化模型来近似物理系统。在存在噪声的情况下,该方法的良好特性会模糊,因为逼近误差不再会收敛,甚至会发散。我们建议通过最小二乘投影来解决此问题,该投影的约束涉及系统的所有可能物理状态所形成的歧管的几何先验知识。该方法的效率(我们称为约束稳定GEIM(CS-GEIM))通过处理核反应堆中子通量重建的数值实验来说明。该程序的理论依据将在以后的工作中介绍。

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