Title :
Three-Dimensional Eddy-Current Analysis in Steel Laminations of Electrical Machines as a Contribution for Improved Iron Loss Modeling
Author :
Handgruber, Paul ; Stermecki, Andrej ; Biro, O. ; Belahcen, Anouar ; Dlala, Emad
Author_Institution :
Christian Doppler Lab. for Multiphysical Simulation, Graz Univ. of Technol., Graz, Austria
Abstract :
A finite-element method to compute the 3-D eddy-current distribution in steel laminations of electrical machines is presented and applied to the loss estimation of an induction machine. Two different eddy-current formulations, the A-V and A-T formulations, are investigated. The 3-D model is excited by boundary conditions derived from a 2-D field solution. The obtained eddy-current losses serve as a validation basis for those from two simplified iron loss models. The first one is the traditional model based on the statistical loss theory. The second one is the so-called hybrid model, which is based on the evaluation of magnetization curves. Both models are found to produce reasonable results for low-frequency losses. The hybrid model is particularly suitable for the estimation of high-order harmonic losses. The results from the models are compared to measured no-load iron loss data.
Keywords :
asynchronous machines; eddy current losses; estimation theory; finite element analysis; iron; laminations; magnetic leakage; magnetisation; statistical analysis; 2D field solution; 3D eddy-current distribution; A-T formulation; A-V formulation; boundary condition; eddy-current formulation; eddy-current loss; electrical machine; finite-element method; high-order harmonic loss; hybrid model; improved iron loss modeling; induction machine loss estimation; low-frequency loss; magnetization curve evaluation; no-load iron loss data; simplified iron loss model; statistical loss theory; steel lamination; three-dimensional eddy-current analysis; AC machines; eddy currents; electric machines; electromagnetic modeling; finite-element methods; magnetic hysteresis; magnetic losses; magnetic materials;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2260713