summary:We propose an adaptive finite element method for the solution of a coefficient inverse problem of simultaneous reconstruction of the dielectric permittivity and magnetic permeability functions in the Maxwell's system using limited boundary observations of the electric field in 3D. We derive a posteriori error estimates in the Tikhonov functional to be minimized and in the regularized solution of this functional, as well as formulate the corresponding adaptive algorithm. Our numerical experiments justify the efficiency of our a posteriori estimates and show significant improvement of the reconstructions obtained on locally adaptively refined meshes
This thesis comprises five scientific papers, all of which are focusing on the inverse problem of re...
We consider a coefficient inverse problem for Maxwell\u27s system in 3-D. The coefficient of interes...
We study how the choice of the regularization parameter affects the quality of the reconstruction of...
summary:We propose an adaptive finite element method for the solution of a coefficient inverse probl...
summary:We propose an adaptive finite element method for the solution of a coefficient inverse probl...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We consider a coefficient inverse problem to determine the dielectric permittivity in Maxwell\u27s e...
We consider a coefficient inverse problem to determine the dielectric permittivity in Maxwell’s equat...
We consider the problem of determination of a dielectric permittivity function from boundary observa...
We consider the problem of determination of a dielectric permittivity function from boundary observa...
We present an adaptive finite element method for solution of an electromagnetic coefficient inverse ...
We consider the inverse problem of the simultaneous reconstruction of the dielectric permittivity an...
We present an adaptive finite element method for solution of an electromagnetic coefficient inverse ...
This thesis comprises five scientific papers, all of which are focusing on the inverse problem of re...
We consider a coefficient inverse problem for Maxwell\u27s system in 3-D. The coefficient of interes...
We study how the choice of the regularization parameter affects the quality of the reconstruction of...
summary:We propose an adaptive finite element method for the solution of a coefficient inverse probl...
summary:We propose an adaptive finite element method for the solution of a coefficient inverse probl...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We propose an adaptive finite element method for the solution of a coefficient inverse problem of si...
We consider a coefficient inverse problem to determine the dielectric permittivity in Maxwell\u27s e...
We consider a coefficient inverse problem to determine the dielectric permittivity in Maxwell’s equat...
We consider the problem of determination of a dielectric permittivity function from boundary observa...
We consider the problem of determination of a dielectric permittivity function from boundary observa...
We present an adaptive finite element method for solution of an electromagnetic coefficient inverse ...
We consider the inverse problem of the simultaneous reconstruction of the dielectric permittivity an...
We present an adaptive finite element method for solution of an electromagnetic coefficient inverse ...
This thesis comprises five scientific papers, all of which are focusing on the inverse problem of re...
We consider a coefficient inverse problem for Maxwell\u27s system in 3-D. The coefficient of interes...
We study how the choice of the regularization parameter affects the quality of the reconstruction of...