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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Active Control of Rotor Vibrations by Two Feedforward Control Algorithms
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Active Control of Rotor Vibrations by Two Feedforward Control Algorithms

机译:两种前馈控制算法对转子振动的主动控制

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摘要

Resonance vibrations (critical speeds) play a significant role in rotor vibration control. Active vibration control methods for rotors are studied to develop solutions to enhance machines' dynamic behavior, durability, and operating range. This paper reports rotor vibration attenuation with a supplementary electromagnetic actuator located outside the rotor bearing span. Feedback and feedforward control system design are shown, and comparative experiments on two active vibration control methods for mass unbalance compensation are reported. The methods compared are adaptive FIR filter with the least mean squares (LMS) algorithm and convergent control (CC) method with a frequency-domain adaptation algorithm. The methods were experimentally validated on the rotor test rig (rotor weight 2.7 kg, length 560 mm, and first critical speed about 50 Hz). The feedback system provided wideband damping in the sub- and supercritical regions. The feedforward systems attenuated vibratory responses at the speed of rotation and its harmonic. The attenuation achieved was about 20 dB depending on the rotor speed. Also, discrete-time CC algorithm is shown to have a feedback equivalent circuit. The significance of feedback control lies in making the system phase-characteristics sufficiently smooth for feedforward control methods. Then, feedforward algorithms provided a good vibration damping performance over the operating range. CC was found to be a more effective and simpler algorithm for the purpose than the adaptive FIR filter with the LMS algorithm. The equivalent feedback circuit derived for CC, and systems similar to CC, facilitates their stability and robustness analysis.
机译:共振振动(临界速度)在转子振动控制中起着重要作用。研究了转子的主动振动控制方法,以开发解决方案,以增强机器的动态性能,耐用性和工作范围。本文报告了位于转子轴承跨度外部的辅助电磁执行器的转子振动衰减。给出了反馈和前馈控制系统的设计,并报告了两种用于质量不平衡补偿的主动振动控制方法的对比实验。比较的方法是具有最小均方(LMS)算法的自适应FIR滤波器和具有频域自适应算法的收敛控制(CC)方法。该方法在转子试验台上进行了实验验证(转子重量2.7 kg,长度560 mm,第一临界速度约50 Hz)。反馈系统在亚临界和超临界区域提供宽带阻尼。前馈系统在旋转速度及其谐波时减弱了振动响应。取决于转子速度,获得的衰减约为20 dB。同样,离散时间CC算法显示为具有反馈等效电路。反馈控制的意义在于使系统的相位特性对于前馈控制方法足够平滑。然后,前馈算法在整个工作范围内提供了良好的减振性能。与具有LMS算法的自适应FIR滤波器相比,CC被认为是一种更有效,更简单的算法。为CC导出的等效反馈电路以及与CC相似的系统有助于其稳定性和鲁棒性分析。

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