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Development of optimal controller design method to compensate for vibrations caused by unbalanced force in rotor system based on Nyquist diagram

机译:基于奈奎斯特图的转子系统不平衡力造成的最佳控制器设计方法的开发

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摘要

In this paper, an optimal controller design method is proposed to compensate for vibrations caused by unbalanced force in the rotor system. The vibrations caused by unbalanced force are the major root cause of excessive whirling vibration in the rotor system, and it is important to compensate for the vibration to maintain its stable operation. The proposed design method can optimize a performance of the controller based on the vector locus of open loop characteristics on the Nyquist diagram. To verifiy the effectiveness, the proposed design method was employed for three typical active vibration control methods. The experimental results show that the proposed method can design the optimal parameters to compensate for the whirling vibrations of the rotor system.
机译:在本文中,提出了一种最佳控制器设计方法来补偿转子系统中不平衡力引起的振动。 由不平衡力引起的振动是转子系统中过度旋转振动的主要原因,并且重要的是补偿振动以保持其稳定的操作。 所提出的设计方法可以基于奈奎斯特图上的开环特性的矢量基因座来优化控制器的性能。 为了验证有效性,采用了三种典型的主动振动控制方法的所提出的设计方法。 实验结果表明,该方法可以设计最佳参数以补偿转子系统的旋转振动。

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