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Investigation of Effects of Asymmetries on the Performance of Permanent Magnet Synchronous Machines

机译:不对称性对永磁同步电机性能的影响研究

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Asymmetries in permanent magnet synchronous machines (PMSM) can result from manufacturing tolerances or optimization techniques that deliberately introduce them on rotor, stator, or both. This paper analyzes the impact of such unbalance on the air gap pressure, that is radial and tangential to the direction of motion, by means of Maxwell Stress Tensor; also, their consequences on torque pulsations and unbalanced magnetic pulling. Neglecting the manufacturing variations in the analysis of high power density PMSMs underestimates the resultant torque ripple. Additionally, new vibration modes occur due to unbalanced radial pressure. On the other hand, a geometry optimized to minimize torque ripple through controlled asymmetry is investigated, the approach compensates harmonics in torque effectively, but such compensation does not have the same effect on radial forces. Finite element analysis and experimentation are used to support the analysis and it is found that an asymmetric PMSM with low torque ripple will not necessarily produce lower vibrations and noise.
机译:永磁同步电机(PMSM)中的不对称性可能是由制造公差或优化技术导致的,这些公差或故意将其引入转子,定子或两者中。本文通过麦克斯韦应力张量分析了这种不平衡对气隙压力的影响,该压力与运动方向呈径向和切向关系。同样,它们对转矩脉动和不平衡的磁拉力的影响。在高功率密度PMSM的分析中忽略制造差异会低估最终的转矩脉动。此外,由于径向压力不平衡,出现了新的振动模式。另一方面,研究了一种通过控制不对称性优化以最小化转矩波动的几何形状,该方法可以有效地补偿转矩中的谐波,但这种补偿对径向力的影响不同。使用有限元分析和实验来支持该分析,并且发现具有低转矩脉动的非对称PMSM不一定会产生较低的振动和噪声。

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