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Research on Automatic Balance Control of Active Magnetic Bearing-Rigid Rotor System

机译:主动电磁轴承-刚性转子系统的自动平衡控制研究

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摘要

In this paper, in order to solve the problem of unbalance vibration of rigid rotor system supported by the active magnetic bearing (AMB), automatic balancing method is applied to suppress the unbalance vibration of the rotor system. Firstly, considering the dynamic and static imbalance of the rotor, the detailed dynamic equations of the AMB-rigid rotor system are established according to Newton's second law. Then, in order to rotate the rotor around the inertia axis, the notch filter with phase compensation is used to eliminate the synchronous control current. Finally, the variable-step fourth-order Runge-Kutta iteration method is used to solve the unbalanced vibration response of the rotor system in MATLAB simulation. The effects of the rotational speed and phase compensation angle on the unbalanced vibration control are analysed in detail. It is found that the synchronous control currents would increase rapidly with the increase of rotational speed if the unbalance vibration cannot be controlled. When the notch filter with phase shift is used to balance the rotor system automatically, the control current is reduced significantly. It avoids the saturation of the power amplifier and reduces the vibration response of the rotor system. The rotor system can be stabilized over the entire operating speed range by adjusting the compensation phase of the notch filter. The method in the paper is easy to implement, and the research result can provide theoretical support for the unbalance vibration control of AMB-rotor systems.
机译:为了解决主动磁轴承(AMB)支撑的刚性转子系统的不平衡振动问题,本文采用自动平衡的方法来抑制转子系统的不平衡振动。首先,考虑到转子的动,静态不平衡,根据牛顿第二定律建立了AMB刚性转子系统的详细动力学方程。然后,为了使转子绕惯性轴旋转,带相位补偿的陷波滤波器用于消除同步控制电流。最后,在MATLAB仿真中,采用变步长四阶Runge-Kutta迭代方法求解转子系统的不平衡振动响应。详细分析了转速和相位补偿角对不平衡振动控制的影响。已经发现,如果不平衡振动无法控制,则同步控制电流将随着转速的增加而迅速增加。当使用带相移的陷波滤波器自动平衡转子系统时,控制电流会大大降低。它避免了功率放大器的饱和,并降低了转子系统的振动响应。通过调整陷波滤波器的补偿相位,可以在整个运行速度范围内稳定转子系统。该方法易于实现,研究结果可为AMB转子系统的不平衡振动控制提供理论支持。

著录项

  • 来源
    《Shock and vibration》 |2019年第4期|3094215.1-3094215.13|共13页
  • 作者单位

    Northeastern Univ Sch Mech Engn & Automat Shenyang 110004 Liaoning Peoples R China;

    CRRC Zhuzhou Inst Co Ltd Zhuzhou 412000 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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