Abstract:
Due to the bright development prospect of the self-levitation technology in the field of high-speed motor and the importance of eddy current loss to permanent magnet moto...Show MoreMetadata
Abstract:
Due to the bright development prospect of the self-levitation technology in the field of high-speed motor and the importance of eddy current loss to permanent magnet motor, a 10kW, 100krpm ultrahigh-speed bearingless permanent magnet synchronous motor (UHSBPMSM) is designed in this paper and the eddy current loss are reduced with the using of auxiliary slots and multi-objective optimization method. Then the thermal analysis is carried out to reveal the effects of suspension windings and the optimization scheme on temperature rise of the designed UHSBPMSM.
Date of Conference: 29 November 2022 - 02 December 2022
Date Added to IEEE Xplore: 21 December 2022
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Thermal Analysis ,
- Permanent Magnet ,
- Permanent Magnet Synchronous Motor ,
- Eddy Current Loss ,
- Optimal Strategy ,
- Temperature Rise ,
- Multi-objective Optimization Method ,
- Magnetic Motion ,
- Magnetic Field ,
- Nonlinear Optical ,
- Finite Element Analysis ,
- Air Gap ,
- Differential Evolution Algorithm ,
- Pole Pairs ,
- Harmonic Content ,
- Finite Element Method Analysis ,
- Average Torque ,
- Motor Structures ,
- Air-gap Flux ,
- Stator Slot ,
- Magnetomotive Force
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Thermal Analysis ,
- Permanent Magnet ,
- Permanent Magnet Synchronous Motor ,
- Eddy Current Loss ,
- Optimal Strategy ,
- Temperature Rise ,
- Multi-objective Optimization Method ,
- Magnetic Motion ,
- Magnetic Field ,
- Nonlinear Optical ,
- Finite Element Analysis ,
- Air Gap ,
- Differential Evolution Algorithm ,
- Pole Pairs ,
- Harmonic Content ,
- Finite Element Method Analysis ,
- Average Torque ,
- Motor Structures ,
- Air-gap Flux ,
- Stator Slot ,
- Magnetomotive Force
- Author Keywords