An efficient model is presented for including penetrable conductive shields in the FDTD method. The shielding panels of negligible thickness are eliminated from the computational domain and replaced by impedance network boundary conditions (INBC's). The implementation of the INBC's in a 3D FDTD code is presented. The proposed method is applied to predict the electromagnetic field in complex shielded configurations
Finite Differential Time Domain (FDTD) method has gained increasing interest in modeling of many ele...
Thin layer models are widely used in the finitedifference time-domain (FDTD) technique to efficientl...
International audienceWe have recently introduced a new approach based on Holland's formalism to dea...
The radiated susceptibility of a shielded cable inside a penetrable shielded enclosure is analysed b...
For modeling of electrically thin conductive shields, the unconditionally stable Associated Hermite ...
A new model is proposed for the transient analysis of the electromagnetic field penetration through ...
A hybrid numerical time domain method is proposed to predict the electromagnetic field around penetr...
The paper describes an efficient subcell model for the simulation of thermoformed lightweight shield...
A numerical method is proposed to model transients in a shielded cable embedded in a three-dimension...
The use of metal-coated plastics is increasing as shielding materials of electronic and information ...
Abstract — Subcellular modeling of thin slots in the finite-difference time-domain (FDTD) method is ...
The finite difference time domain (FDTD) method has become a main stream analysis tool for engineers...
Abstract- This paper is a brief presentation of FDTD numerical method usable for simulation of elect...
The analysis of shielding enclosures is complicated by the existence of apertures and cables. The fi...
This thesis consists of two sections. In Section 1, an efficient implementation of a surface impedan...
Finite Differential Time Domain (FDTD) method has gained increasing interest in modeling of many ele...
Thin layer models are widely used in the finitedifference time-domain (FDTD) technique to efficientl...
International audienceWe have recently introduced a new approach based on Holland's formalism to dea...
The radiated susceptibility of a shielded cable inside a penetrable shielded enclosure is analysed b...
For modeling of electrically thin conductive shields, the unconditionally stable Associated Hermite ...
A new model is proposed for the transient analysis of the electromagnetic field penetration through ...
A hybrid numerical time domain method is proposed to predict the electromagnetic field around penetr...
The paper describes an efficient subcell model for the simulation of thermoformed lightweight shield...
A numerical method is proposed to model transients in a shielded cable embedded in a three-dimension...
The use of metal-coated plastics is increasing as shielding materials of electronic and information ...
Abstract — Subcellular modeling of thin slots in the finite-difference time-domain (FDTD) method is ...
The finite difference time domain (FDTD) method has become a main stream analysis tool for engineers...
Abstract- This paper is a brief presentation of FDTD numerical method usable for simulation of elect...
The analysis of shielding enclosures is complicated by the existence of apertures and cables. The fi...
This thesis consists of two sections. In Section 1, an efficient implementation of a surface impedan...
Finite Differential Time Domain (FDTD) method has gained increasing interest in modeling of many ele...
Thin layer models are widely used in the finitedifference time-domain (FDTD) technique to efficientl...
International audienceWe have recently introduced a new approach based on Holland's formalism to dea...