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On the Spillover of Steady State Unbalance Response of a Rotating Shaft Under Velocity Feedback

机译:速度反馈下旋转轴稳态不平衡响应的溢出

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It has been stated that a uniform rotating shaft in the Rayleigh beam model has only a finite number of critical speeds and precession modes. This paper presents a controller design of optimal sensor/actuator location and feedback gain for steady state unbalance response of a rotating shaft operating in a speed range. For systems under order-limit constraint such that only part of the precession modes can be included in the reduced-order controller design, the system stability can be evaluated. The example of a hinged-hinged rotating shaft is employed to illustrate the controller design of velocity feedback in collocated and noncollocated senor/actuator configuration. Analyses show that the reduced-order controller not only guarantees the closed loop system stability but also effectively suppress the unbalance response.
机译:已经指出,瑞利光束模型中的均匀旋转轴仅具有有限数量的临界速度和进动模式。本文提出了一种针对传感器/执行器的最佳位置和反馈增益的控制器设计,用于在速度范围内运行的旋转轴的稳态失衡响应。对于受阶数限制约束的系统,使得仅部分进动模式可以包含在降阶控制器设计中,则可以评估系统稳定性。铰链式旋转轴的示例用于说明并置和未并置传感器/执行器配置中速度反馈的控制器设计。分析表明,降阶控制器不仅可以保证闭环系统的稳定性,而且可以有效地抑制不平衡响应。

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