A three-dimensional edge element procedure is presented to analyze the magnetic field around thin shields embedded in a physically large domain. The shield region is eliminated from the computational domain and coupled boundary conditions named impedance network boundary conditions are imposed on the new boundary surfaces to take into account the field discontinuity produced by the eliminated shield. An experimental setup is built and the measured magnetic fields are compared to the results obtained by the proposed procedure
Three-dimensional special elements, called the gap element, the expanding element, and the shielding...
Thin layers of magnetic substance are often used in magnetic shieldings. Since the scale of the spat...
In several electromagnetic applications field quantities are confined in layers which are thin with ...
A time-domain analysis of quasi-static magnetic fields around nonperfectly conductive shields is per...
A finite element (FE) approach is presented to analyze the electromagnetic field in free space consi...
A prediction model of low frequency, low impedance magnetic fields around conductive shield configur...
Nowadays, electromagnetic problems are present everywhere in the daily life. Wherever electrical mac...
A domain decomposition method is introduced to facilitate the efficient and rigorous computation of ...
International audienceThis paper presents a model for calculating electric field in non conducting r...
The authors propose a novel time-domain extension of the well-known frequency-domain surface-impedan...
A three-dimensional boundary integral method (3D BIM) capable of analyzing the magnetic field at ext...
The authors propose a novel time-domain extension of the well-known frequency-domain surface-impedan...
The application of periodic boundary conditions in the analysis of three-dimensional magnetic fields...
The demand for accurate characterization and design of complex, composite structures has necessitate...
A method for analyzing 3-D open-boundary magnetic field problems using infinite elements has been de...
Three-dimensional special elements, called the gap element, the expanding element, and the shielding...
Thin layers of magnetic substance are often used in magnetic shieldings. Since the scale of the spat...
In several electromagnetic applications field quantities are confined in layers which are thin with ...
A time-domain analysis of quasi-static magnetic fields around nonperfectly conductive shields is per...
A finite element (FE) approach is presented to analyze the electromagnetic field in free space consi...
A prediction model of low frequency, low impedance magnetic fields around conductive shield configur...
Nowadays, electromagnetic problems are present everywhere in the daily life. Wherever electrical mac...
A domain decomposition method is introduced to facilitate the efficient and rigorous computation of ...
International audienceThis paper presents a model for calculating electric field in non conducting r...
The authors propose a novel time-domain extension of the well-known frequency-domain surface-impedan...
A three-dimensional boundary integral method (3D BIM) capable of analyzing the magnetic field at ext...
The authors propose a novel time-domain extension of the well-known frequency-domain surface-impedan...
The application of periodic boundary conditions in the analysis of three-dimensional magnetic fields...
The demand for accurate characterization and design of complex, composite structures has necessitate...
A method for analyzing 3-D open-boundary magnetic field problems using infinite elements has been de...
Three-dimensional special elements, called the gap element, the expanding element, and the shielding...
Thin layers of magnetic substance are often used in magnetic shieldings. Since the scale of the spat...
In several electromagnetic applications field quantities are confined in layers which are thin with ...