
Stabilization of (G)EIM in presence of measurement noise: application to nuclear reactor physics
Argaud, J. P.; Bouriquet, B.; Gong, Helin; Maday, Yvon; Mula, Olga (2016), Stabilization of (G)EIM in presence of measurement noise: application to nuclear reactor physics, in Marco L. Bittencourt; Ney A. Dumont; Jan S. Hesthaven, Spectral and High Order Methods for Partial Differential Equations ICOSAHOM 2016 / Selected Papers from the ICOSAHOM conference, June 27-July 1, 2016, Rio de Janeiro, Brazil, Preprints Ceremade : Paris, p. 133-145. 10.1007/978-3-319-65870-4_8
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Type
Communication / ConférenceDate
2016Book title
Spectral and High Order Methods for Partial Differential Equations ICOSAHOM 2016 / Selected Papers from the ICOSAHOM conference, June 27-July 1, 2016, Rio de Janeiro, BrazilBook author
Marco L. Bittencourt; Ney A. Dumont; Jan S. HesthavenPublisher
Preprints Ceremade
Published in
Paris
ISBN
978-3-319-65869-8
Pages
133-145
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Show full item recordAuthor(s)
Argaud, J. P.R&D
Bouriquet, B.
Gong, Helin
Maday, Yvon
Mula, Olga

CEntre de REcherches en MAthématiques de la DEcision [CEREMADE]
Abstract (EN)
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 a 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.Subjects / Keywords
Empirical Interpolation MethodRelated items
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