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Demagnetization Analysis and Magnet Design of Permanent Magnet Synchronous Motor for Electric Power Steering Applications

机译:用于电动转向应用永磁同步电动机的去磁分析及磁铁设计

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The demagnetization analysis method of permanent magnet synchronous motor (PMSM) used in electric power steering (EPS) system is studied, and the size of permanent magnet (PM) is optimized considering demagnetization performance and manufacturing cost in this paper. PMSM has the advantages of high torque density and high efficiency, which is suitable for EPS system. However, the PMs may demagnetize at a high temperature or by a larger reverse magnetic field, which will affect the torque characteristics or output power of the motor, eventually resulting in the failure to drive the load and also reducing the reliability of the EPS system. In order to deal with these problems, it is necessary to consider demagnetization in the analysis stage. In addition, EPS systems are sensitive to cost since PM material is expensive, so it is necessary to restrain irreversible demagnetization under the condition of minimizing the volume of PM. A demagnetization analysis method based on 2D and 3D finite element analysis (FEA) for PMSM in EPS systems is proposed and the size of PM is mainly designed. Based on the computation of the distribution of magnetic flux density on the surface of PM, the demagnetization risk is evaluated. The simulation and experiment results clearly show that the proposed PMSM design can meet the requirements of EPS system.
机译:研究了电动转向器(EPS)系统中使用的永磁同步电动机(PMSM)的退磁分析方法,并且在本文中考虑了去磁性能和制造成本优化了永磁体(PM)的尺寸。 PMSM具有高扭矩密度和高效率的优点,适用于EPS系统。然而,PMS可以在高温或通过较大的逆磁场下消除,这将影响电动机的扭矩特性或输出功率,最终导致失败驾驶负载并降低EPS系统的可靠性。为了处理这些问题,有必要考虑分析阶段的退缩化。此外,由于PM材料昂贵,因此EPS系统对成本敏感,因此必须在最小化PM体积的情况下抑制不可逆的退磁。提出了一种基于EPS系统中PMSM的2D和3D有限元分析(FEA)的去磁分析方法,主要设计了PM的尺寸。基于在PM表面上的磁通密度分布的计算,评估退磁风险。模拟和实验结果清楚地表明,所提出的PMSM设计可以满足EPS系统的要求。

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