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Investigation of electromechanical coupling lateral/torsional vibration in a high-speed rotating continuous flexible shaft of PMSM

机译:PMSM高速旋转连续挠性轴中机电耦合横向/扭转振动的研究

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The rotor of Permanent Magnet Synchronous Motors (PMSM) is an electromechanical coupled dynamics system. The asymmetrical magnetic field-induced mechanical vibration has important effect on the operation performance of the high speed and high power density PMSM. In this paper, an electromechanical coupled lateral/torsional dynamic model caused by electromagnetic excitation is derived based on a Lagrange-Maxwell approach. The stability of the equilibrium was analyzed using a linearized matrix of the system equation. A stability criteria of coupled torsional-lateral motions was provided, and the influences of the electromagnetic and mechanical parameters on mechanical vibration stability were investigated. Finally, the vibration damping of the electromechanical coupling parameters vibration was explored. These results we represent get us better to understand the nonlinear response of the eccentric PMSM rotor system and are beneficial to control and diagnose the eccentric. (C) 2019 Elsevier Inc. All rights reserved.
机译:永磁同步电动机(PMSM)的转子是机电耦合的动力学系统。非对称磁场引起的机械振动对高速高功率密度PMSM的运行性能具有重要影响。本文基于拉格朗日-麦克斯韦方法,推导了电磁激励引起的机​​电耦合横向/扭转动力学模型。使用系统方程的线性矩阵分析了平衡的稳定性。给出了扭转-横向运动耦合的稳定性准则,并研究了电磁和机械参数对机械振动稳定性的影响。最后,探讨了机电耦合参数振动的振动阻尼。我们表示的这些结果使我们能够更好地理解偏心PMSM转子系统的非线性响应,并且有利于控制和诊断偏心。 (C)2019 Elsevier Inc.保留所有权利。

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