TY - GEN
T1 - A stator-PM consequent-pole vernier machine with hybrid excitation and DC-biased sinusoidal current
AU - Jia, Shaofeng
AU - Qu, Ronghai
AU - Li, Jian
AU - Li, Dawei
AU - Kong, Wubin
AU - Ye, Donglin
N1 - Publisher Copyright:
© 2016 IEEE.
PY - 2017/1/12
Y1 - 2017/1/12
N2 - This paper proposes a novel hybrid excitation vernier permanent magnet machine (HE-VPM). The characteristics of the proposed machine are: 1) The PMs are embedded in the stator teeth, which is helpful for heat dissipation; 2) the rotor is salient structure without PMs and windings, which ensures the reliability of high speed running; 3) The non-overlapping concentrated winding shortens the end-winding, and improves the torque density, 4) Only half of the stator teeth possess PMs, and the total amount of PMs are decreased; 5) The DC current are injected to the armature coils, therefore, the exciting field can be adjusted flexibly. In this paper, the electromagnetic performance, including back-EMF, torque, etc. are analyzed with finite element analysis (FEA). The results show that the proposed machine exhibits flexible field adjustment capability, which may be suitable for applications requiring wide speed range operation. Besides, it is found that, compared with fed with the existing pure sinusoidal phase current, higher torque can be obtained with DC-biased phase current under constant stator copper loss.
AB - This paper proposes a novel hybrid excitation vernier permanent magnet machine (HE-VPM). The characteristics of the proposed machine are: 1) The PMs are embedded in the stator teeth, which is helpful for heat dissipation; 2) the rotor is salient structure without PMs and windings, which ensures the reliability of high speed running; 3) The non-overlapping concentrated winding shortens the end-winding, and improves the torque density, 4) Only half of the stator teeth possess PMs, and the total amount of PMs are decreased; 5) The DC current are injected to the armature coils, therefore, the exciting field can be adjusted flexibly. In this paper, the electromagnetic performance, including back-EMF, torque, etc. are analyzed with finite element analysis (FEA). The results show that the proposed machine exhibits flexible field adjustment capability, which may be suitable for applications requiring wide speed range operation. Besides, it is found that, compared with fed with the existing pure sinusoidal phase current, higher torque can be obtained with DC-biased phase current under constant stator copper loss.
KW - Concentrated coil winding
KW - DC current injected
KW - Hybrid excitation
KW - Salient rotor
KW - Stator PM
KW - Vernier machines
UR - https://www.scopus.com/pages/publications/85012008472
U2 - 10.1109/CEFC.2016.7815987
DO - 10.1109/CEFC.2016.7815987
M3 - 会议稿件
AN - SCOPUS:85012008472
T3 - IEEE CEFC 2016 - 17th Biennial Conference on Electromagnetic Field Computation
BT - IEEE CEFC 2016 - 17th Biennial Conference on Electromagnetic Field Computation
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 17th Biennial IEEE Conference on Electromagnetic Field Computation, IEEE CEFC 2016
Y2 - 13 November 2016 through 16 November 2016
ER -