Dynamic equivalent magnetic network model and drive system of permanent magnet synchronous motor with double V-shaped magnet structure
Article dans une revue avec comité de lecture
Date
2023-12Journal
MechatronicsRésumé
In order to improve the driving performance of electric vehicles (EV), a permanent magnet synchronous motor with double V-shaped magnet structure (DVMPMSM) and its driving system are studied in this paper. A 150kW DVMPMSM for EV is designed firstly, and the design parameters of the motor are determined. In order to overcome the drawbacks of the finite element analysis (FEA), especially the issue on calculating time, a dynamic equivalent magnetic network (EMN) model of the DVMPMSM is constructed, by which the air gap flux density, back electromotive force, electromagnetic torque and winding inductance parameters of the motor can be solved. Compared with the FEA, the dynamic EMN model constructed in this paper greatly increases the calculation speed while the calculation accuracy is maintained well. This paper also introduces the stator winding switching method to replace the field-weakening control method. Then, a vector control method of DVMPMSM based on dynamic EMN model and stator winding switching is proposed. The demands brought forward by EV for high torque output under low speed and high upper limit of speed can be well satisfied. Finally, the accuracy of the dynamic EMN model and the effectiveness
of the proposed control method is validated through prototype experiments.
Fichier(s) constituant cette publication
- Nom:
- LE2P_MECATRONICS_2023_NGUYEN.pdf
- Taille:
- 1.197Mo
- Format:
- Fin d'embargo:
- 2024-07-01
Cette publication figure dans le(s) laboratoire(s) suivant(s)
Documents liés
Visualiser des documents liés par titre, auteur, créateur et sujet.
-
Communication avec acteThis paper presents a new approach to control properly the currents of a dual three-phase PMSM operating in open-circuit fault condition with a wide speed range. Using fault tolerant control strategies proposed in the ...
-
Axial Stress Analysis and Comparison of the Novel Dual 3-phase Axial Flux Permanent Magnet Machines Communication avec acteIn previous research, a novel three-phase dual-stator axial flux permanent magnet machine characterized by the advantages of compact structure and low moment of inertia is proposed for industrial robot application. In order ...
-
Conférence invitéeZHANG, Hao; ZHAO, Benteng; GONG, Jinlin; XU, Yanliang; VU, Duc Tan; SEMAIL, Eric; DOS SANTOS MORAES, Tiago José; NGUYEN, Ngac Ky (IEEE, 2019)Compared to sinusoidal machines, a bi-harmonic machine (with only two harmonics of similar value in the electromotive force spectrum) can develop torque of comparable values under three kinds of supply: with only first or ...
-
Communication avec acteThis paper presents a sensorless control strategy for seven-phase non-sinusoidal permanent magnet synchronous machine (NSPMSM) with high frequency signal injection (HFSI) method in 5th harmonic subspace. Seven-phase ...
-
Article dans une revue avec comité de lectureZHAO, B.; GONG, J.; TONG, T.; XU, Y.; SEMAIL, Eric; NGUYEN, Ngac Ky; GILLON, Frédéric (Institute of Electrical and Electronics Engineers (IEEE), 2021)In this article, a novel five-phase fractional-slot concentrated winding (FSCW) with 20-slot/22-pole is presented. It benefits not only the advantages of conventional FSCW but also weak space harmonics of magnetomotive ...