Prediction of Post-demagnetization Electromagnetic Performance for SPMSM Considering Rotor Eccentricity

IEEE Transactions on Transportation Electrification(2024)

引用 0|浏览9
暂无评分
摘要
Rotor eccentricity is usually unavoidable due to manufacturing tolerance, and a certain degree of irreversible demagnetization is allowed to increase the power density, hence it is worthwhile to study the electromagnetic performance under both faults. To this end, the electromagnetic performance of surface-mounted permanent magnet (PM) synchronous motor with static and dynamic eccentricity after local irreversible demagnetization (LID) is investigated in this article. First, a generalized LID calculation method based on the PM subdivision model is proposed to realize the quick and exact localization and computation of LID. Considering the core saturation and nonlinearity of demagnetization curve, an equivalent transformation model is established to simulate rotor eccentricity effect. Combined with the improved subdomain method, a magnetic field analytical model considering rotor eccentricity and LID is established to realize the rapid prediction of key electromagnetic performances including air-gap flux density, electromagnetic force, unbalanced magnetic force, back electromotive force, cogging torque, and electromagnetic torque. On this basis, the effect of eccentricity on LID and both faults on electromagnetic performances are revealed. The effectiveness of the analytical method is verified by finite element analysis and experiment. The short simulation time of the model provides a fast means for motor design and fault-tolerant optimization.
更多
查看译文
关键词
Electromagnetic performance,local irreversible demagnetization,permanent magnet synchronous motor,rotor eccentricity,subdomain method
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要