Title :
A Complex-Valued Rotating Magnetic Property Model and Its Application to Iron Core Loss Calculation
Author :
Yanli Zhang ; Yang Liu ; Yumei Li ; Dexin Xie ; Baodong Bai
Author_Institution :
Liaoning Key Lab. of Modern Electr. Equipments Theor. & Common Technol., Shenyang Univ. of Technol., Shenyang, China
Abstract :
This paper presents a complex-valued model when considering rotational magnetic properties of an electrical steel sheet from the viewpoint of improving the computation efficiency. The effective magnetic reluctivity and magnetic hysteresis coefficients in this model were interpolated from measured data based on a 2-D rotational magnetic property measurement system, in which the effect of higher harmonic terms of magnetic field intensity after saturation was considered. To reduce the computation error to some extent resulted from complex approximation of magnetic field quantities, the effective magnetic coefficients were expressed as the function of magnitude and direction of magnetic flux density. Considering transformer and three-phase induction motor core models as examples, the magnetic field distribution and core loss were calculated and the effectiveness of the proposed model was verified with the experimental results.
Keywords :
approximation theory; induction motors; magnetic fields; magnetic flux; transformer cores; 2-D rotational magnetic property measurement system; Fe; complex approximation; complex-valued rotating magnetic property model; computation error; electrical steel sheet; iron core loss calculation; magnetic coefficients; magnetic field distribution; magnetic field intensity; magnetic field quantities; magnetic flux density; magnetic hysteresis coefficients; magnetic reluctivity; rotational magnetic properties; saturation; three-phase induction motor core models; transformer; Computational modeling; Magnetic cores; Magnetic hysteresis; Magnetic properties; Perpendicular magnetic anisotropy; Saturation magnetization; Core loss; finite-element analysis (FEA); magnetic hysteresis; rotating magnetic property;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2281460