Title :
Analytical derivation of a coupled-circuit model of a claw-pole alternator with concentrated stator windings
Author :
Bai, Hua ; Pekarek, Steven D. ; Tichenor, Jerry ; Eversman, Walter ; Buening, Duane J. ; Holbrook, Gregory R. ; Hull, Michael L. ; Krefta, Ronald J. ; Shields, Steven J.
Author_Institution :
Dept. of Electr. & Comput. Eng., Missouri Univ., Rolla, MO, USA
fDate :
3/1/2002 12:00:00 AM
Abstract :
A lumped-parameter coupled-circuit model of a claw-pole alternator is derived. To derive the model, analytical techniques are used to define a three-dimensional (3-D) Fourier-series representation of the airgap flux density. Included in the series expansion are the harmonics introduced by rotor saliency, concentrated stator windings, and stator slots. From the airgap flux density waveform, relatively simple closed-form expressions for the stator and rotor self- and mutual-inductances are obtained. The coupled-circuit model is implemented in the simulation of an alternator/rectifier system using a commercial state-model-based circuit analysis program. Comparisons with experimental results demonstrate the accuracy of the model in predicting both the steady-state and transient behavior of the machine
Keywords :
Fourier series; air gaps; alternators; harmonic analysis; inductance; lumped parameter networks; machine theory; magnetic flux; rectifying circuits; rotors; stators; 3D Fourier series; airgap flux density; airgap flux density waveform; alternator/rectifier system; claw-pole alternator; closed-form expressions; concentrated stator windings; harmonics; lumped-parameter coupled-circuit model; power conversion harmonics; rotor mutual-inductances; rotor saliency; rotor self-inductances; series expansion; state-model-based circuit analysis program; stator mutual-inductances; stator self-inductances; stator slots; synchronous machines; torque measurement; Alternators; Analytical models; Circuit analysis; Circuit simulation; Closed-form solution; Coupling circuits; Predictive models; Rectifiers; Rotors; Stator windings;
Journal_Title :
Energy Conversion, IEEE Transactions on