Analysis and Design Optimization of a Permanent Magnet Synchronous Motor for a Campus Patrol Electric Vehicle
Анализ и оптимизация конструкции синхронного двигателя с постоянными магнитами для электрического транспортного средства патрулирования кампуса
2019-09-06
SCID: 54.1/7x5z7qav
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electric vehiclefinite element analysismotor optimizationpermanent magnet synchronous motortorque ripple reduction
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Abstract (AI)
This work presents the analysis, design and optimization of a permanent magnet synchronous motor (PMSM) for an electric vehicle (EV) used for campus patrol with a specific drive cycle. Firstly, based on the collected data like the parameters and speed from a test EV on the campus road, the dynamic calculation of the EV is conducted to decide the rated power and speed range of the drive PMSM. Secondly, according to these requirements, an initial design and some basic design parameters are obtained. Thirdly, optimization process is implemented to improve the performance of the designed PMSM. The permanent magnet (PM) structure, airgap length and stator core geometry are optimized respectively in this step. Different optimization processes are proposed to meet multiple optimization objectives simultaneously. Based on the finite element analysis (FEA) method, it is found that the harmonic of the optimized PMSM is lower than that of the initial design, and the torque ripple is reduced by 24%. The effectiveness of optimization on the core loss and PM eddy loss is validated and the temperature rise is suppressed effectively. Finally, a prototype is fabricated for the optimized PMSM and an experimental platform is developed. The test results verify that the optimized PMSM meets the requirements of the specific campus patrol EV well.
Key Findings
1
A PMSM was designed for a campus patrol EV using measured vehicle parameters, campus-road speeds, and a specific drive cycle to determine power and speed requirements.
2
A fabricated prototype and experimental platform verified that the optimized PMSM meets the requirements of the campus patrol electric vehicle.
3
Finite-element analysis showed that optimization reduced harmonic content and decreased torque ripple by 24% compared with the initial design.
4
The motor optimization simultaneously addressed permanent-magnet structure, air-gap length, and stator-core geometry through multiple proposed optimization processes.
5
The optimized design improved core-loss and permanent-magnet eddy-loss performance while effectively suppressing temperature rise.
Research Object
A permanent magnet synchronous motor (PMSM) for a campus patrol electric vehicle
Research Subject
The PMSM’s electromagnetic performance and thermal behavior, including harmonic content, torque ripple, core loss, permanent-magnet eddy-current loss, and temperature rise, optimized for the vehicle’s specific drive cycle
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2019-09-06
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