A Comparison of Permanent-Magnet Vernier Motor and Interior Permanent-Magnet Motor for Hybrid Electric Vehicles
Author:
Affiliation:
1. Nanyang Technological University,School of Electrical and Electric Engineering,Singapore
2. Schaeffler Hub for Advanced Research at NTU, Schaeffler (Singapore) Pte. Ltd.,Singapore
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9806820/9806821/09807168.pdf?arnumber=9807168
Reference17 articles.
1. Advanced High Torque Density PM Vernier Machine With Multiple Working Harmonics
2. Performance Analysis of a Flux-Concentrating Field-Modulated Permanent-Magnet Machine for Direct-Drive Applications
3. High-Power-Factor Vernier Permanent-Magnet Machines
4. Evaluation of the 2010 Toyota Prius Hybrid Synergy Drive System
5. General Airgap Field Modulation Theory for Electrical Machines
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1. Research on Air-Gap Field Modulation Effect of Torque Enhanced Hybrid Permanent Magnet Motor;IEEE Transactions on Magnetics;2024-09
2. Comparative Study of Permanent-Magnet Vernier Motor and Interior Permanent-Magnet Motor for Hybrid Electric Vehicles;IEEE Transactions on Industry Applications;2023-11
3. Torque Performance Enhancement for Hybrid PM Motor Considering Magnet Characteristic Difference and Variation;IEEE Transactions on Magnetics;2023-11
4. Design of Quasi-Halbach Permanent-Magnet Vernier Machine for Direct-Drive Urban Vehicle Application;Machines;2023-01-19
5. Design of a PM Vernier machine with concentrated winding aimed at a direct drive in Wheel operating for Electric bus;2022 Second International Conference on Sustainable Mobility Applications, Renewables and Technology (SMART);2022-11-23
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