DocumentCode :
741895
Title :
Influence of Phase Magnetic Couplings on Phase Current Characteristics of Multiphase BLDC Machines With Overlapping Phase Windings
Author :
Bostanci, Emine ; Neuschl, Zdeno ; Plikat, Robert
Author_Institution :
Inst. for Drive Syst. & Power Electron., Leibniz Univ. Hanover, Hanover, Germany
Volume :
51
Issue :
9
fYear :
2015
Firstpage :
1
Lastpage :
13
Abstract :
Multiphase brushless dc (BLDC) machines are implemented in electric and hybrid electric vehicle applications due to their high torque/power density, good fault tolerance capability, and low torque ripple. Moreover, the per-phase converter rating can be reduced by increasing the phase number. However, the number of magnetic couplings between phases increases with the phase number, and these magnetic couplings can have an important influence on the machine performance. Therefore, they need to be considered in simulation models and their effect should be considered in control algorithms. Accordingly, the objective of this paper is to analyze the effect of magnetic phase couplings on the performance of multiphase BLDC machines with an overlapping phase winding configuration. First, a detailed electric machine model, in which the machine parameters that are determined by 2-D finite-element method analysis are implemented, is developed. Using this model, the influence of mutual inductances on phase current characteristics with pulse amplitude modulation (PAM) and pulsewidth modulation (PWM) controls is investigated. In addition, a novel PAM-based control strategy, in which the effect of phase mutual inductances is considered, is proposed and analyzed. After demonstrating the influence of mutual inductances on phase current characteristics, the dependence of mutual inductances on the winding configuration is studied. Finally, experimental results with the PAM control and the new PAM-based control are used to validate the simulation results.
Keywords :
PWM power convertors; brushless DC motors; electromagnetic coupling; finite element analysis; machine control; pulse amplitude modulation; 2D finite element method analysis; PWM control; brushless DC machines; hybrid electric vehicle; magnetic phase couplings; multiphase BLDC machines; mutual inductance; overlapping phase windings; phase current characteristics; phase magnetic couplings; pulse amplitude modulation; pulsewidth modulation; Analytical models; Couplings; Finite element analysis; Inductance; Integrated circuit modeling; Torque; Windings; Finite-element method (FEM); Multiphase brushless dc (BLDC) machine; finite element method (FEM); modeling; multiphase brushless dc (BLDC) machine; pulse amplitude modulation (PAM) control; pulse width modulation (PWM) control; pulsewidth modulation (PWM) control; self- and mutual inductance; self-inductance and mutual inductance;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2430833
Filename :
7103333
Link To Document :
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