Title :
Eddy-Current Loss Analysis of Noncontact Magnetic Device With Permanent Magnets Based on Analytical Field Calculations
Author :
Kyoung-Chul Min ; Jang-Young Choi ; Jeong-Man Kim ; Han-Wook Cho ; Seok-Myoeng Jang
Author_Institution :
Dept. of Electr. Eng., Chungnam Nat. Univ., Daejeon, South Korea
Abstract :
This paper reports on the analysis of eddy-current loss of a magnetic coupling (MC) that uses a Halbach array permanent magnet (PM). A MC is a kind of noncontact magnetic device (NCMD). When the conductive materials of NCMDs are exposed to time-varying magnetic fields, eddy currents are induced in the conductive materials, leading to losses. An analysis of the eddy-current loss is therefore required, and for MCs, the analysis of eddy-current loss is particularly more important. We obtain the magnetic field solutions of the Halbach magnetized PM based on the magnetic vector potential and 2-D polar-coordinate system. In addition, using the derived magnetic field solutions, we derive analytical solutions for eddy-current loss using the equivalent electrical resistance that is calculated from the magnet volume and conductivity. A 2-D finite-element analysis is employed to confirm the validity of the analytical results of the eddy-current density and eddy-current loss. Finally, we investigate the influence of the number of Halbach segments on the eddy-current loss induced on the MC.
Keywords :
current density; eddy current losses; electromagnetic coupling; finite element analysis; magnetic fields; permanent magnets; 2D finite-element analysis; 2D polar-coordinate system; Halbach array permanent magnet; NCMD; conductive materials; eddy-current density; eddy-current loss; equivalent electrical resistance; magnet volume; magnetic coupling; magnetic field solutions; magnetic vector potential; noncontact magnetic device; time-varying magnetic fields; Analytical models; Arrays; Conductivity; Eddy currents; Magnetic fields; Magnetization; Rotors; Eddy current loss; Eddy-current loss; FEA; Halbach; MC; NCMDs; finite-element analysis (FEA); magnetic coupling (MC); noncontact magnetic devices (NCMDs);
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2442255