Title of article :
Numerically efficient steady-state finite-element analysis of magnetically saturated electromechanical devices
Author/Authors :
S.، Li, نويسنده , , H.، Hofmann, نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-3480
From page :
3481
To page :
0
Abstract :
We present a numerically efficient steady-state finite-element solver for electromechanical devices incorporating magnetic saturation in which the magnetization of ferromagnetic materials is modeled as a fielddependent equivalent current density. We use a Lagrangian representation of continuum variables, thereby removing numerical instabilities due to the Peclet effect but precluding the use of standard harmonic balance methods. The shooting-Newton method is therefore used to calculate the steady-state behavior. A matrix-free Krylovsubspace linear solver, the generalized minimum residuals method (GMRES), dramatically reduces the computational burden by eliminating the need to calculate the shooting-Newton Jacobian. Simulation results from a synchronous reluctance motor model with 10 288 nodes and 4935 elements confirm that the proposed method requires much less computation time than running transient analysis until convergence.
Keywords :
OBESITY , Genotype , Energy
Journal title :
IEEE TRANSACTIONS ON MAGNETICS
Serial Year :
2003
Journal title :
IEEE TRANSACTIONS ON MAGNETICS
Record number :
104000
Link To Document :
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