Characteristics Evaluation of a Segmental Rotor Type Switched Reluctance Motor with Concentrated Winding for Torque Density and Efficiency Improvement

With the rapid development of power electronic techniques and the increasing cost of permanent magnets (PMs) materials, switched reluctance motors (SRMs) have recently gained more attention. However, traditional SRMs have a relatively low torque density. For the sake of increasing the motor torque density, this paper proposes a novel segmental rotor type SRM. The proposed motor adopts hybrid stator poles and concentrated windings in the stator side and a segmental rotor structure in the rotor side, which is completely different from the structures of the traditional SRM. The special structure of the motor shortens the magnetic flux paths of the motor, separates the parts of the magnetic flux paths from one another, and eradicates the magnetic flux reversal in the motor stator in order to improve the electric utilization and output torque density of the motor. Meanwhile, the requirement of the magneto-motive force and the core loss of the motor is also decreased, thereby improving the efficiency of the motor. For the purpose of proving the proposed structure, the characteristics of the motor are analyzed using the finite element method and are compared to those of the traditional 12/8 SRM, which is designed for the same application. Moreover, the prototypes of the traditional 12/8 and proposed SRMs are manufactured, and experiments based on the prototypes are performed. Finally, the effectiveness of the structure of the proposed motor is further proven by the experimental results.

[1]  M. Hamouda,et al.  Performance improvement based on adaptive commutation strategy for switched reluctance motors using direct torque control , 2022, Alexandria Engineering Journal.

[2]  Jianguo Zhu,et al.  Real-Time HIL Emulation for a Segmented-Rotor Switched Reluctance Motor Using a New Magnetic Equivalent Circuit , 2020, IEEE Transactions on Power Electronics.

[3]  Jin-Woo Ahn,et al.  Characteristics Analysis and Comparison of Conventional and Segmental Rotor Type 12/8 Switched Reluctance Motors , 2019, IEEE Transactions on Industry Applications.

[4]  Youguang Guo,et al.  Study on Segmented-Rotor Switched Reluctance Motors With Different Rotor Pole Numbers for BSG System of Hybrid Electric Vehicles , 2019, IEEE Transactions on Vehicular Technology.

[5]  Lian-Li Zhu,et al.  Electromagnetic Analysis on Novel Rotor-Segmented Axial-Field SRM Based on Dynamic Magnetic Equivalent Circuit , 2019, IEEE Transactions on Magnetics.

[6]  Shaohua Wang,et al.  Core Losses Analysis of a Novel 16/10 Segmented Rotor Switched Reluctance BSG Motor for HEVs Using Nonlinear Lumped Parameter Equivalent Circuit Model , 2018, IEEE/ASME Transactions on Mechatronics.

[7]  Barrie C. Mecrow,et al.  Optimization of an 80-kW Segmental Rotor Switched Reluctance Machine for Automotive Traction , 2015, IEEE Transactions on Industry Applications.

[8]  T. Abe,et al.  The fundamental characteristics of novel switched reluctance motor with segment core embedded in aluminum rotor block , 2006, 2005 International Conference on Electrical Machines and Systems.

[9]  Barrie Mecrow,et al.  Segmental rotor switched reluctance motors with single-tooth windings , 2003 .

[10]  J.W. Finch,et al.  Preliminary performance evaluation of switched reluctance motors with segmental rotors , 2003, IEEE Transactions on Energy Conversion.

[11]  Barrie Mecrow,et al.  Switched reluctance motors with segmental rotors , 2002 .

[12]  Fahad Al-Amyal,et al.  Research on Novel Hybrid Torque Sharing Function for Switched Reluctance Motors , 2022, IEEE Access.