DocumentCode
1525522
Title
Finite Element Model for the Computation of the Transfer Impedance of Cable Shields
Author
Otin, Ruben ; Verpoorte, Jaco ; Schippers, Harmen
Author_Institution
Int. Center for Numerical Methods in Eng. (CIMNE), Barcelona, Spain
Volume
53
Issue
4
fYear
2011
Firstpage
950
Lastpage
958
Abstract
The transfer impedance of a cable shield is a parameter that characterizes its shielding effectiveness. To calculate this parameter, we can use analytical or semiempirical approaches but, in this study, the objective is to adapt a general-purpose finite element formulation. The advantage of a numerical method is that it can be applied to a wider variety of situations, where complex geometries and materials may be present. To obtain numerically the transfer impedance, we first express it as a function of the electric field and then we compute the field by means of the finite element method. The only input data required in the process are the geometry and the material properties of the shield. To validate our numerical model, we apply it to a few cable shields and compare the results of the simulations with analytical models and measurements obtained from the literature.
Keywords
cable shielding; computational electromagnetics; electric impedance; finite element analysis; cable shields; electric field; finite element model; shielding effectiveness; transfer impedance computation; Cable shielding; Electron tubes; Finite element methods; Geometry; Impedance; Numerical models; Surface impedance; Finite element method (FEM); cable shielding; coaxial transmission lines; electromagnetic compatibility; numerical analysis; transfer impedance;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2011.2146257
Filename
5773080
Link To Document