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Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion

This monograph is concerned with the analysis and numerical solution of a stochastic inverse anomaly detection problem in electrical impedance tomography (EIT). Martin Simon studies the problem of detecting a parameterized anomaly in an isotropic, stationary and ergodic conductivity random field who...

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Detalles Bibliográficos
Autor principal: Simon, Martin
Lenguaje:eng
Publicado: Springer 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-658-10993-6
http://cds.cern.ch/record/2040783
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author Simon, Martin
author_facet Simon, Martin
author_sort Simon, Martin
collection CERN
description This monograph is concerned with the analysis and numerical solution of a stochastic inverse anomaly detection problem in electrical impedance tomography (EIT). Martin Simon studies the problem of detecting a parameterized anomaly in an isotropic, stationary and ergodic conductivity random field whose realizations are rapidly oscillating. For this purpose, he derives Feynman-Kac formulae to rigorously justify stochastic homogenization in the case of the underlying stochastic boundary value problem. The author combines techniques from the theory of partial differential equations and functional analysis with probabilistic ideas, paving the way to new mathematical theorems which may be fruitfully used in the treatment of the problem at hand. Moreover, the author proposes an efficient numerical method in the framework of Bayesian inversion for the practical solution of the stochastic inverse anomaly detection problem.   Contents Feynman-Kac formulae Stochastic homogenization Statistical inverse problems  Target Groups Students and researchers in the fields of inverse problems, partial differential equations, probability theory and stochastic processes Practitioners in the fields of tomographic imaging and noninvasive testing via EIT  About the Author Martin Simon has worked as a researcher at the Institute of Mathematics at the University of Mainz from 2008 to 2014. During this period he had several research stays at the University of Helsinki. He has recently joined an asset management company as a financial mathematician.
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spelling cern-20407832021-04-21T20:08:28Zdoi:10.1007/978-3-658-10993-6http://cds.cern.ch/record/2040783engSimon, MartinAnomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversionMathematical Physics and MathematicsThis monograph is concerned with the analysis and numerical solution of a stochastic inverse anomaly detection problem in electrical impedance tomography (EIT). Martin Simon studies the problem of detecting a parameterized anomaly in an isotropic, stationary and ergodic conductivity random field whose realizations are rapidly oscillating. For this purpose, he derives Feynman-Kac formulae to rigorously justify stochastic homogenization in the case of the underlying stochastic boundary value problem. The author combines techniques from the theory of partial differential equations and functional analysis with probabilistic ideas, paving the way to new mathematical theorems which may be fruitfully used in the treatment of the problem at hand. Moreover, the author proposes an efficient numerical method in the framework of Bayesian inversion for the practical solution of the stochastic inverse anomaly detection problem.   Contents Feynman-Kac formulae Stochastic homogenization Statistical inverse problems  Target Groups Students and researchers in the fields of inverse problems, partial differential equations, probability theory and stochastic processes Practitioners in the fields of tomographic imaging and noninvasive testing via EIT  About the Author Martin Simon has worked as a researcher at the Institute of Mathematics at the University of Mainz from 2008 to 2014. During this period he had several research stays at the University of Helsinki. He has recently joined an asset management company as a financial mathematician.Springeroai:cds.cern.ch:20407832015
spellingShingle Mathematical Physics and Mathematics
Simon, Martin
Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title_full Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title_fullStr Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title_full_unstemmed Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title_short Anomaly detection in random heterogeneous media: Feynman-Kac formulae, stochastic homogenization and statistical inversion
title_sort anomaly detection in random heterogeneous media: feynman-kac formulae, stochastic homogenization and statistical inversion
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-3-658-10993-6
http://cds.cern.ch/record/2040783
work_keys_str_mv AT simonmartin anomalydetectioninrandomheterogeneousmediafeynmankacformulaestochastichomogenizationandstatisticalinversion