Title :
Three-Dimensional Analytical Modeling Technique of Electromagnetic Fields of Air-Cored Coils Surrounded by Different Ferromagnetic Boundaries
Author :
Smeets, Johan P. C. ; Overboom, Timo T. ; Jansen, J.W. ; Lomonova, E.A.
Author_Institution :
Eindhoven Univ. of Technol., Eindhoven, Netherlands
Abstract :
This paper presents a method for the calculation of the self- and mutual inductance of coils surrounded by air, positioned on top of a ferromagnetic plate and placed in a cavity inside a ferromagnetic plate. The magnetic fields around an array of air-cored coils are obtained by means of the three-dimensional magnetic vector potential using Fourier analysis. The current density distribution of a coil is modeled by four straight bars; three different configurations to position these bars against each other are presented as an alternative to model the round corners of a coil. An error of maximum 5% has been obtained in the analytically calculated flux density distribution compared to the values obtained from 3-D finite element simulations. Self- and mutual inductances are calculated for each current density description and compared with finite element simulations and measurements. A good agreement has been found for coils modeled by four overlapping or four trapezoidal bars.
Keywords :
Fourier analysis; coils; current density; finite element analysis; 3D analytical modeling technique; 3D magnetic vector potential; Fourier analysis; air-cored coil array; coil current density distribution; coil mutual inductance calculation; coil round corners; coil self-inductance calculation; electromagnetic fields; ferromagnetic boundaries; ferromagnetic plate; Atmospheric modeling; Bars; Coils; Current density; Harmonic analysis; Magnetic separation; Vectors; Inductance; magnetic fields; magnetic scalar potential; magnetic vector potential; modeling;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2278528