Average Torque Improvement of Three Phase Interior Permanent-Magnet Machine Using 3rd Harmonic in Rotor Shape
Author:
Wang Kai,Zhu Zi-Qiang
Publisher
Springer Singapore
Reference45 articles.
1. Z.Q. Zhu, D. Howe, Electrical machines and drives for electric, hybrid, and fuel cell vehicles. Proc. IEEE 95(4), 746–765 (2007)
2. G. Pellegrino, A. Vagati, P. Guglielmi, B. Boazzo, Performance comparison between surface-mounted and interior PM motor drives for electric vehicle application. IEEE Trans. Ind. Electron. 59(2), 803–811 (2012)
3. W.P. Cao, B.C. Mecrow, G.J. Atkinson, J.W. Bennett, D.J. Atkinson, Overview of electric motor technologies used for more electric aircraft (MEA). IEEE Trans. Ind. Electron. 59(9), 3523–3531 (2012)
4. T.M. Jahns, G.B. Kliman, T.W. Neumann, Interior permanentmagnet synchronous motors for adjustable-speed drives. IEEE Trans. Ind. Appl. IA-22(4), 738–747 (1986)
5. S. Morimoto, M. Sanada, Y. Takeda, Wide-speed operation of interior permanent magnet synchronous motors with high-performance current regulator. IEEE Trans. Ind. Appl. 30(4), 920–926 (1994)