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Magnetic lumped parameter modeling of rotor eccentricity in brushless permanent-magnet motors

机译:无刷永磁电动机转子偏心磁集中参数建模

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摘要

Vibration, giving rise to acoustical noise, is an important index of motor performance. The unbalanced force due to rotor eccentricity caused by manufacturing imprecision or bearing defects is one possible source of excitation to vibration. The previously developed fast design package for permanent magnet motors, based on magnetic lumped parameter modeling, is modified to predict the influence of rotor eccentricity. Both static and dynamic cases are investigated. Magnetic material nonlinearity is taken into consideration. A two-dimensional relative permeance function is derived by conformal transformation followed by the modification of permeances modeling the air gap. Static and dynamic rotor eccentricity bring different effects to symmetric and asymmetric motors and are discussed separately.
机译:振动会产生声音,是电机性能的重要指标。由于制造不精确或轴承缺陷导致的转子偏心造成的不平衡力是激发振动的一种可能来源。以前开发的用于永磁电动机的快速设计软件包基于磁集总参数模型进行了修改,以预测转子偏心率的影响。静态和动态情况都进行了调查。考虑磁性材料的非线性。二维相对磁导率函数是通过共形变换导出的,然后对模拟气隙的磁导率进行修改。静态和动态转子偏心率给对称和非对称电动机带来不同的影响,将分别进行讨论。

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