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首页> 外文期刊>Journal of Sound and Vibration >Nonlinear dynamic behaviors of permanent magnet synchronous motors in electric vehicles caused by unbalanced magnetic pull
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Nonlinear dynamic behaviors of permanent magnet synchronous motors in electric vehicles caused by unbalanced magnetic pull

机译:电动汽车中永磁同步电动机由于磁拉不平衡引起的非线性动力学行为

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Unbalanced magnetic pull (UMP) plays a key role in nonlinear dynamic behaviors of permanent magnet synchronous motors (PMSM) in electric vehicles. Based on Jeffcott rotor model, the stiffness characteristics of the rotor system of the PMSM are analyzed and the nonlinear dynamic behaviors influenced by UMP are investigated. In free vibration study, eigenvalue-based stability analysis for multiple equilibrium points is performed which offers an insight in system stiffness. Amplitude modulation effects are discovered of which the mechanism is explained and the period of modulating signal is carried out by phase analysis and averaging method. The analysis indicates that the effects are caused by the interaction of the initial phases of forward and backward whirling motions. In forced vibration study, considering dynamic eccentricity, frequency characteristics revealing softening type are obtained by harmonic balance method, and the stability of periodic solution is investigated by Routh-Hurwitz criterion. The frequency characteristics analysis indicates that the response amplitude is limited in the range between the amplitudes of the two kinds of equilibrium points. In the vicinity of the continuum of equilibrium points, the system hardly provides resistance to bending, and hence external disturbances easily cause loss of stability. It is useful for the design of the PMSM with high stability and low vibration and acoustic noise. (C) 2016 Elsevier Ltd. All rights reserved.
机译:电动汽车中的永磁同步电动机(PMSM)的非线性动力学行为中,不平衡磁拉(UMP)起着关键作用。基于Jeffcott转子模型,分析了永磁同步电机转子系统的刚度特性,研究了UMP影响的非线性动力学行为。在自由振动研究中,对多个平衡点进行了基于特征值的稳定性分析,从而提供了系统刚度的见解。发现了调幅效果,并解释了其机理,并通过相位分析和求平均方法进行了调制信号的周期。分析表明,影响是由向前和向后旋转运动的初始阶段的相互作用引起的。在强迫振动研究中,考虑了动态偏心率,通过谐波平衡法获得了揭示软化类型的频率特性,并通过Routh-Hurwitz准则研究了周期解的稳定性。频率特性分析表明,响应幅度被限制在两种平衡点的幅度之间。在平衡点的连续区域附近,系统几乎不提供抗弯曲性,因此外部干扰很容易导致稳定性下降。对于高稳定性,低振动和低噪声的PMSM设计非常有用。 (C)2016 Elsevier Ltd.保留所有权利。

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