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Active robust vibration control of flexible composite beams with parameter perturbations

机译:具有参数摄动的柔性组合梁的主动鲁棒振动控制

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摘要

In this paper, a time domain approach is presented to treat the problem of active controlling simultaneously the bending and torsional vibration of flexible composite beams under both mode truncations and parameter perturbations. In the proposedapproach, the residual model, which is known as unstructured uncertainty, is viewed as an additive perturbation to the controlled model. Based on a state space model, which incorporates both bending and torsional deformation effects, of the flexiblecomposite beam with piezoelectric sensors and actuators, a robust stability condition is derived to guarantee that both bending and torsional vibration of the flexible composite beam, which is subject to both mode truncation and linear time-varyingparameter perturbations, can be actively controlled by an observer-based controller. The proposed robust stability condition gives an insight into the relationship between the stability margins of the controlled and residual mode subsystems, spillovereffects and additive time-varying parameter perturbations. Finally, an active robust vibration control problem of a cantilevered flexible composite beam with piezoelectric sensors and actuators is provided for illustration.
机译:在本文中,提出了一种时域方法来处理在模式截断和参数摄动下主动同时控制柔性复合材料梁的弯曲和扭转振动的问题。在提出的方法中,残差模型(称为非结构不确定性)被视为对受控模型的加扰。基于结合了压电传感器和执行器的柔性复合梁弯曲和扭转变形影响的状态空间模型,得出了鲁棒的稳定性条件,以保证柔性复合梁的弯曲振动和扭转振动都受到模式截断和线性时变参数扰动都可以由基于观察者的控制器主动控制。所提出的鲁棒稳定性条件使人深入了解了受控模式子系统和残余模式子系统的稳定性裕度,溢出效应和附加时变参数摄动之间的关系。最后,为了说明,提供了具有压电传感器和致动器的悬臂柔性复合梁的主动鲁棒振动控制问题。

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