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References

1 
A. K. Putri, M. Hombitzer, D. Franck, K. Hameyer, 2017, Comparison of the characteristics of cost-oriented designed high-speed low-power interior PMSM, IEEE Transactions on Industrial Applications, Vol. 53, No. 6, pp. 5262-5271Google Search
2 
W. L. Soong, T. J. E. Miller, 1994, Field-weakening performance of brushless synchronous AC motor drives, IEEE Proceedings - Electric Power Applications, Vol. 141, No. 6, pp. 331-340Google Search
3 
B. Sneyers, D. W. Novotny, T. A. Lipo, 1985, Field-weakening in buried permanent magnet AC motor drives, IEEE Trans. Ind. Applicat., Vol. IA-21, pp. 398-407Google Search
4 
T. M. Jahns, G. B. Kliman, T. W. Neumann, 1986, Iterior Permanent Magnet Synchronous Motors for Adjustable Speed Drives, IEEE Trans.Ind. Appl., Vol. IA-22, No. 4, pp. 738-747Google Search
5 
S.H. Han, T.M. Jahns, Z.Q. Zhu, 2010, Design Tradoffs Between Stator Core Loss and Torque Ripple in IPM Machines, IEEE Trans. Ind. Applications, Vol. 46, No. 1, pp. 187-195Google Search
6 
B.J. Chalmers, L. Musaba, D.F. Gosden, 1996, Variable-Frequency Synchronous Motor Drives for Electric vehicles, IEEE Trans. Ind. Applications, Vol. 32, No. 4, pp. 896-903Google Search
7 
Qiang Miao, Qiang Li, Yamei Xu, 2022, Virtual Constant Signal Injection-Based MTPA Control for IPMSM Considering Partial Derivative Term of Motor Inductance Parameters, World Electr. Veh. J., Vol. 13, No. 12, pp. 240Google Search
8 
Shuo Wang, Jinson Kang, Michele Degano, A. Galassini, Chris Gerada, 2020, An Accurate Wide-Speed Rang Control method of IPMSM Considering Resistive Voltage drop and magnetic Saturation, IEEE Transactions on Industrial Electronics, Vol. 67, No. 4, pp. 2630-2640Google Search
9 
K. Yamazaki, H. Ishigami, 2010, Rotor-shape optimization of interior permanent-magnet motors to reduce harmonic iron losses, IEEE Trans. on Industrial Electronics, Vol. 57, No. 1, pp. 61-69Google Search
10 
H. Jang, H. Kim, D. -W. Nam, W. -H. Kim, J. Lee, C. Jin, 2021, Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System, IEEE Access, Vol. 9, pp. 121405-121413Google Search
11 
Z. Q. Zhu, D. Howe, 2020, Electrical machines and drives for electric, hybrid, and fuel cell vehiclesGoogle Search
12 
J. Lee, K. Kim, S. K. Sul, 2020, Rotor shape optimization of IPMSM for improved flux-weakening performance in EV traction, IEEE Transactions on Industry ApplicationsGoogle Search
13 
X. Sun, L. Chen, Z. Q. Zhu, 2022, Design considerations of IPMSMs for wide-speed-range EV applications, IEEE Transactions on Industrial ElectronicsGoogle Search
14 
S. Morimoto, M. Sanada, Y. Takeda, 2020, Flux-weakening control methods for permanent magnet synchronous motors, IEEE Transactions on Industry ApplicationsGoogle Search
15 
H. Kim, S. K. Sul, 2021, Maximum torque per voltage control of IPMSM under magnetic saturation, IEEE Transactions on Power ElectronicsGoogle Search
16 
G. Liu, Q. Chen, X. Wang, 2022, Flux-weakening control of IPMSM considering cross-coupling magnetic saturation, IEEE Transactions on Industrial ElectronicsGoogle Search
17 
J. Kim, B. Lee, 2022, Performance prediction of IPMSM considering iron loss and saturation for EV applications, IET Electric Power ApplicationsGoogle Search
18 
C. C. Chan, K. T. Chau, 2020, An overview of electric motor drives for electric vehicles, IEEE Transactions on Industrial ElectronicsGoogle Search
19 
Z. Q. Zhu, K. Diao, 2023, Advanced modeling and control of IPMSMs for EV applications, IEEE Open Journal of Industry ApplicationsGoogle Search
20 
G. Kang, D. Kim, J. P. Hong, 2025, Trends in rotor design of IPMSM for next-generation electric vehicles, IEEE Transactions on Transportation ElectrificationGoogle Search