DocumentCode
1762114
Title
Inductance Estimation of Electrically Excited Synchronous Motor via Polynomial Approximations by Least Square Method
Author
Ilsu Jeong ; Bon-Gwan Gu ; Junwoo Kim ; Kwanghee Nam ; Yoonjae Kim
Author_Institution
Dept. of Electr. Eng., Pohang Univ. of Sci. & Technol. (POSTECH), Pohang, South Korea
Volume
51
Issue
2
fYear
2015
fDate
March-April 2015
Firstpage
1526
Lastpage
1537
Abstract
Electrically excited synchronous motors are designed to have high power density for electric vehicle applications. During a high-torque operation, severe nonlinearities associated with a saturation are observed: change of inductances, emergence of cross-coupling effects, variation of back EMF coefficient, etc. A flux linkage map over the current plane is obtained via finite-element analysis (FEA), and it is fitted by a third-order polynomial with the use of the least square method. Then, by grouping terms of the polynomial, the inductances are expressed as functions of currents. The validity of inductance fitting is shown by comparing with FEA and experimental results. This enables us to predict inductances online instead of using premade lookup table. The torque equation is expanded by incorporating the cross-coupling inductances, for which an extended maximum torque per ampere (MTPA) is developed by using Ferrari´s method to a quartic equation. The extended MTPA locus is compared with the experimental optimal results.
Keywords
couplings; electric potential; electric vehicles; finite element analysis; inductance; least squares approximations; magnetic flux; polynomial approximation; synchronous motors; table lookup; torque; FEA; Ferrari method; MTPA locus; back EMF coefficient; cross-coupling effects; cross-coupling inductance; electric vehicle applications; electrically excited synchronous motor inductance estimation; finite element analysis; flux linkage map; high-torque operation; least square method; maximum torque per ampere; premade lookup table; quartic equation; third-order polynomial approximations; torque equation; Couplings; Finite element analysis; Inductance; Polynomials; Rotors; Synchronous motors; Torque; Cross-coupling effect; Ferrari´s method; electrically excited synchronous motor (EESM); frozen permeability (FP) method; magnetic saturation; maximum torque per ampere (MTPA); nonlinear inductance;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2014.2339634
Filename
6857370
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