A finite element (FE) approach is presented to analyze the electromagnetic field in free space considering the field penetration through shields in complex configurations. The shield region is eliminated from the FE domain and substituted by an equivalent surface, where constraint conditions avoid the continuity of the tangential fields. The constraint relationships between the tangential fields on both facets of the surface are obtained by the shielding theory. The implementation of the proposed method is presented to solve the electric field wave equation using edge element
International audienceThis article deals with the computation of the power starting from the electro...
The problem of two-dimensional electromagnetic scattering from bodies in free space has been formula...
In the low-frequency (LF) range ferromagnetic IT, FUNDAMENTAL EQUATIONS materials are often used to ...
A three-dimensional edge element procedure is presented to analyze the magnetic field around thin sh...
New and efficient modelling concepts and procedures based on Tangential Vectorial Finite Element met...
Finite element method is widely used to analyze, simulate, optimize and design electromagnetic devic...
In Finite Element Methods for solving electromagnetic field problems, the use of Edge Elements has b...
Purpose. Analysis of the properties of Edge-Based vector of basis functions for the volume elements ...
Over the last thirty years, the finite element method has been established as a powerful and widely ...
This paper deals with the most relevant parallel and numerical issues that arise when applying the E...
Nowadays, electromagnetic problems are present everywhere in the daily life. Wherever electrical mac...
© 2015 IEEE. This paper presents the fundamental principle of the extended finite element method (XF...
ESTE RELATÓRIO E PARA USO EXCLUSIVO DO INSTITUTO DE ENGENHARIA NUCLEAR O direito a utilização de in...
A time-domain analysis of quasi-static magnetic fields around nonperfectly conductive shields is per...
A new artificial material single layer (AMSL) model is presented to solve shielding problem. The fie...
International audienceThis article deals with the computation of the power starting from the electro...
The problem of two-dimensional electromagnetic scattering from bodies in free space has been formula...
In the low-frequency (LF) range ferromagnetic IT, FUNDAMENTAL EQUATIONS materials are often used to ...
A three-dimensional edge element procedure is presented to analyze the magnetic field around thin sh...
New and efficient modelling concepts and procedures based on Tangential Vectorial Finite Element met...
Finite element method is widely used to analyze, simulate, optimize and design electromagnetic devic...
In Finite Element Methods for solving electromagnetic field problems, the use of Edge Elements has b...
Purpose. Analysis of the properties of Edge-Based vector of basis functions for the volume elements ...
Over the last thirty years, the finite element method has been established as a powerful and widely ...
This paper deals with the most relevant parallel and numerical issues that arise when applying the E...
Nowadays, electromagnetic problems are present everywhere in the daily life. Wherever electrical mac...
© 2015 IEEE. This paper presents the fundamental principle of the extended finite element method (XF...
ESTE RELATÓRIO E PARA USO EXCLUSIVO DO INSTITUTO DE ENGENHARIA NUCLEAR O direito a utilização de in...
A time-domain analysis of quasi-static magnetic fields around nonperfectly conductive shields is per...
A new artificial material single layer (AMSL) model is presented to solve shielding problem. The fie...
International audienceThis article deals with the computation of the power starting from the electro...
The problem of two-dimensional electromagnetic scattering from bodies in free space has been formula...
In the low-frequency (LF) range ferromagnetic IT, FUNDAMENTAL EQUATIONS materials are often used to ...