The inverse problem dealt with in this article consists of reconstructing the electrical conductivity from the free response of the system in the magneto-quasi-stationary (MQS) limit. The MQS limit corresponds to a diffusion PDE. In this framework, a key role is played by the monotonicity principle (MP), that is a monotone relation connecting the unknown material property to the (measured) free-response. The MP is relevant as the basis of noniterative and real-time imaging methods. The Monotonicity Principle has been found in many different physical problems governed by diverse PDEs. Despite its rather general nature, each physical/mathematical context requires the proper operator showing the MP to be identified. In order to achieve this, i...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...
This paper is in the framework of the non-destructive evaluation of conductive materials by means of...
Abstract Magnetic induction tomography (MIT) is a low-resolution imaging modality used for reconstru...
The inverse problem dealt with in this article consists of reconstructing the electrical conductivit...
The inverse problem treated in this article consists in reconstructing the electrical conductivity f...
This paper is focused on the non-iterative (direct) imaging of conductive materials from magnetic in...
We treat an inverse electrical conductivity problem which deals with the reconstruction of nonlinear...
In eddy current tomography, the conductivity profile of conductive materials is reconstructed throug...
The monotonicity-based approach has become one of the fundamental methods for reconstructing inclusi...
19 pagesThe monotonicity-based approach has become one of the fundamental methods for reconstructing...
Download Citation Email Print Request Permissions Magnetic induction tomography (MIT) a...
In eddy current tomography the conductivity profile of conductive materials is reconstructed through...
This talk is devoted to the Electromagnetic Imaging of materials. Electromagnetic Imaging of materia...
In this paper, we address the imaging of the spatial distribution of the resistivity of conductive m...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...
This paper is in the framework of the non-destructive evaluation of conductive materials by means of...
Abstract Magnetic induction tomography (MIT) is a low-resolution imaging modality used for reconstru...
The inverse problem dealt with in this article consists of reconstructing the electrical conductivit...
The inverse problem treated in this article consists in reconstructing the electrical conductivity f...
This paper is focused on the non-iterative (direct) imaging of conductive materials from magnetic in...
We treat an inverse electrical conductivity problem which deals with the reconstruction of nonlinear...
In eddy current tomography, the conductivity profile of conductive materials is reconstructed throug...
The monotonicity-based approach has become one of the fundamental methods for reconstructing inclusi...
19 pagesThe monotonicity-based approach has become one of the fundamental methods for reconstructing...
Download Citation Email Print Request Permissions Magnetic induction tomography (MIT) a...
In eddy current tomography the conductivity profile of conductive materials is reconstructed through...
This talk is devoted to the Electromagnetic Imaging of materials. Electromagnetic Imaging of materia...
In this paper, we address the imaging of the spatial distribution of the resistivity of conductive m...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...
This paper is in the framework of the non-destructive evaluation of conductive materials by means of...
Abstract Magnetic induction tomography (MIT) is a low-resolution imaging modality used for reconstru...