Title :
Modeling Magnet Length In 2-D Finite-Element Analysis of Electric Machines
Author :
Ruoho, Sami ; Santa-Nokki, Timo ; Kolehmainen, Jere ; Arkkio, Antero
Author_Institution :
Dept. of Electr. Eng., Helsinki Univ. of Technol., Helsinki, Finland
Abstract :
Two-dimensional finite-element-method (2-D FEM) calculations are widely used in electric machine modeling instead of three-dimensional calculations because of their faster calculation time and simplicity. However, the 2-D calculations ignore end effects, causing a large error in calculating eddy currents in permanent magnets of synchronous machines. In this paper, we develop three analytical models and one curve-fitting model based on numerical calculations. The models improve the eddy-current loss calculation accuracy in 2-D FEM. The method adjusts the resistivity of a magnet material according to magnet dimensions. The adjustment takes into account the resistivity, the temperature dependence, and anisotropy of the resistivity of rare-earth magnet materials. We compare the models against FEM calculations in two and three dimensions and show that all the models improve the eddy-current loss calculation accuracy significantly, especially when the time-harmonic caused eddy-current losses in permanent magnets are considered.
Keywords :
curve fitting; eddy current losses; finite element analysis; magnetic anisotropy; permanent magnet machines; permanent magnets; synchronous machines; 2D finite-element analysis; anisotropy; curve fitting model; eddy current loss; electric machines; magnet length; permanent magnet; rare earth magnet material; synchronous machines; temperature dependence; time harmonic; Eddy current; finite-element analysis; magnetic field modeling; permanent magnets;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2009.2018621