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Lateral vibration control and stabilization of the quasiperiodic oscillations for rotor-active magnetic bearings system

机译:转子主动磁轴承系统的横向振动控制和Quasipheriodic振动的稳定

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This work aims to improve the vibrational behaviors of the rotor-active magnetic bearings (AMB) system via proposing a new control methodology for such lateral vibrations. Accordingly, the rotor-AMB system model is modified by integrating the conventional proportional-derivative (PD) controller along with the positive position feedback (PPF) controller to the considered system. The control currents in the rotor-AMB system are designed to become a combination of two control signals: One of them is generated via the PD controller, and the other one comes from the PPF controller. Based on the suggested control method, the whole dynamical system model is derived and then analyzed by the multiple time-scale perturbation method. Then, the bifurcation diagrams of both the spinning speed and rotor eccentricity response curves are investigated before and after control. The obtained analytical results showed that the integrating of the PPF controller to the considered system could mitigate the system lateral vibration close to zero. Moreover, the system quasiperiodic motions have been stabilized after control and the sensitivity to the initial conditions has eliminated. Finally, numerical validations for the obtained analytical results are performed that illustrated an excellent agreement with the analytical ones.
机译:该工作旨在通过提出用于这种横向振动的新控制方法来改善转子主动磁轴承(AMB)系统的振动行为。因此,通过将传统的比例衍生物(PD)控制器与正位置反馈(PPF)控制器集成到所考虑的系统来修改转子-AMB系统模型。转子-BAM系统中的控制电流被设计为成为两个控制信号的组合:其中一个通过PD控制器产生,另一个来自PPF控制器。基于建议的控制方法,通过多次级扰动方法来分析整个动态系统模型,然后通过多次级扰动方法进行分析。然后,在控制之前和之后研究了纺丝速度和转子偏心响应曲线的分叉图。所获得的分析结果表明,PPF控制器对所考虑的系统的集成可以减轻靠近零的系统横向振动。此外,在对照后稳定了系统QuaSipheri周期运动,并且已经消除了对初始条件的敏感性。最后,进行了所获得的分析结果的数值验证,其与分析术说明了良好的一致性。

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