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首页> 外文期刊>Journal of intelligent material systems and structures >Vibration isolation for parameter-varying rotor systems using piezoelectric actuators and gain-scheduled control
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Vibration isolation for parameter-varying rotor systems using piezoelectric actuators and gain-scheduled control

机译:使用压电致动器和增益调度控制的变参数转子系统的隔振

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This paper deals with the active vibration isolation for a rotor subject to gyroscopic oscillations, where gain-scheduled H-infinity-control is used to steer an active, piezoelectric bearing. Rotating machines are often exposed to gyroscopic effects, which occur due to bending deformations of rotors and subsequent tilting of eccentric mass elements. Gyroscopic moments observed at rotors are proportional to the rotational speed and couple radial degrees of freedom. This relationship with the operating conditions renders the system dynamics well-suited for the use of linear parameter-varying models and controllers, relying on the rotational speed as an uncertain parameter. In this paper, we design linear gain-scheduled H-infinity-controllers guaranteeing both robust stability and performance within a given range of operating conditions. The paper is based on a rotor test rig with two unbalance-induced resonance frequencies in its operating range. The rotor has two protruding discs, one of which is centered between one active and one passive bearing support. The active support consists of two piezoelectric stack actuators and two collocated piezoelectric load washers. Closed-loop performance is assessed via isolation of unbalance-induced vibrations using both simulation and supporting experimental data.
机译:本文涉及陀螺振动的转子的主动隔振,其中增益调度的H无限控制用于操纵主动压电轴承。旋转机械经常受到陀螺效应的影响,陀螺效应是由于转子的弯曲变形和随后的偏心质量元件的倾斜而产生的。在转子上观察到的陀螺力矩与转速成正比,并与径向自由度耦合。与操作条件的这种关系使得系统动力学非常适合于使用线性参数变化模型和控制器,它依赖于转速作为不确定参数。在本文中,我们设计了线性增益预定的H-infinity控制器,该控制器在给定的工作条件范围内保证鲁棒的稳定性和性能。本文基于转子试验台,在其工作范围内具有两个不平衡感应的共振频率。转子具有两个突出的圆盘,其中一个位于一个主动轴承支架和一个被动轴承支架之间。主动支架由两个压电堆栈致动器和两个并置的压电负载垫圈组成。使用模拟和辅助实验数据,通过隔离不平衡引起的振动来评估闭环性能。

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