Abstract
This paper presents the design and optimization procedure of a novel mechanical-offset complementary-stator flux-reversal (MOCS-FRPM) machine. First, based on the original topologies, the pole-pair and flux modulation pole optimizations contribute to the high power density, efficiency, and larger torque capacity for the machine design. Second, based on the 2-D optimization results, the 3-D mechanical-offset structures are adopted for the torque ripple suppression. In fact, compared with the 3-D non-offset machine, the rotor mechanical-offset topology possesses the better torque performance, which can decrease the torque ripple by 34.6%, and with a slight 6.4% reduction of the torque average. Thus, through the proposed optimization procedure, the new complementary-stator machine accommodates the merits of the large torque capacity, low torque ripple, high efficiency, and high reliability. Also, the artful incorporation of the 2-D and 3-D optimizations leads to the reduced computation time and higher optimization efficiency.
| Original language | English |
|---|---|
| Article number | 8204007 |
| Journal | IEEE Transactions on Magnetics |
| Volume | 55 |
| Issue number | 7 |
| Online published | 20 Feb 2019 |
| DOIs | |
| Publication status | Published - Jul 2019 |
Funding
ACKNOWLEDGMENT This work was supported in part by the Natural Science Foundation of China, China, under Project 51677159 and in part by Hong Kong Research Grant Council, Hong Kong, under Project CityU21201216.
Research Keywords
- Complementary-stator
- flux-reversal permanent-magnet (FRPM) machine
- mechanical offset
- optimization procedure
RGC Funding Information
- RGC-funded
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Dive into the research topics of 'Design and Optimization Procedure of a Mechanical-Offset Complementary-Stator Flux-Reversal Permanent-Magnet Machine'. Together they form a unique fingerprint.Projects
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ECS: Development of Novel High-performance Double-stator Motor Drives for Direct-drive Robotics
LIU, C. (Principal Investigator / Project Coordinator)
1/10/16 → 15/09/20
Project: Research
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