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Christian Soize
Professor Emeritus,
Université Gustave Eiffel,
MSME UMR 8208
100%
Libre accès
5
Documents
Affiliations actuelles
Identifiants chercheurs
- christian-soize
- ResearcherId : C-3704-2016
- 0000-0002-1083-6771
- ResearcherId : http://www.researcherid.com/rid/C-3704-2016
Présentation
. Statistical Learning, Probabilistic Learning, Machine Learning, and Nonconvex Optimization Problem.
. Uncertainty Quantification, stochastic modeling of uncertainties in computational sciences and engineering, their propagation and their quantification solving stochastic inverse problems.
. Stochastic multi-scale modeling and application to microstructures of heterogeneous materials.
. Computational science, computational mechanics, linear and nonlinear structural dynamics, structural acoustics, vibroacoustics, and coupled systems.
. Computational stochastic dynamics for linear and nonlinear dynamical systems.
Domaines de recherche
Compétences
Publications
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Sound-insulation layer modelling in car computational vibroacoustics in the medium-frequency rangeActa Acustica united with Acustica, 2010, 96 (3), pp.437-444. ⟨10.3813/AAA.918296⟩
Article dans une revue
hal-00684316v1
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Fuzzy structure theory modeling of sound-insulation layers in complex vibroacoustic uncertain systems: Theory and experimental validationJournal of the Acoustical Society of America, 2009, 125 (1), pp.138-153. ⟨10.1121/1.3035827⟩
Article dans une revue
hal-00684495v1
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Probabilistic model identification of uncertainties in computational models for dynamical systems and experimental validationComputer Methods in Applied Mechanics and Engineering, 2008, 198 (1), pp.150-163. ⟨10.1016/j.cma.2008.04.007⟩
Article dans une revue
hal-00686138v1
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Modélisation non-paramétrique des incertitudes en vibroacoustique appliquée aux automobiles10ème Congrès Français d'Acoustique, Apr 2010, Lyon, France. pp.1-5
Communication dans un congrès
hal-00550535v1
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Identification of a sound-insulation layer modelled by fuzzy structure theory - Experimental validationInternational Conference on Noise and Vibration Engineering, Katholieke Univ Leuven, Sep 2008, Leuven, Belgium. pp.Pages: 3801-3815
Communication dans un congrès
hal-00686144v1
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