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.
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Feynman-Kac Formulae, Stochastic Homogenization and Statistical Inversion
Produktdetaljer
ISBN
9783658109936
Publisert
2019
Utgiver
Springer Nature
Språk
Product language
Engelsk
Format
Product format
Digital bok
Forfatter