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首页> 外文期刊>Journal of vibration and control: JVC >Adaptive modal vibration control for smart flexible beam with two piezoelectric actuators by multivariable self-tuning control
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Adaptive modal vibration control for smart flexible beam with two piezoelectric actuators by multivariable self-tuning control

机译:多变量自调谐控制具有两个压电致动器的智能柔性梁的自适应模态振动控制

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摘要

It has been popular for decades that the vibrations of space structures are suppressed with smart actuators. However, the higher mode vibrations are often motivated when a control strategy is applied to attenuate the vibration for the smart structures. Moreover, if the multi-mode vibration of a smart structure is suppressed with multi-actuators, a proper multivariable control law will be adopted to solve the coupling problem caused by the multi-actuators of the smart structure. Therefore, in the paper, a decoupling technique for two modal vibrations of a smart flexible beam with two piezoelectric patches is adopted by adaptive control. The proposed control law is designed with a multivariable minimum variance self-tuning control. Considering the first two orders of modal vibrations, two piezoelectric patches are configured on the flexible beam according to the strain of the first two orders of modal vibrations along the longitudinal direction of the beam. A dynamical model for the flexible beam with two piezoelectric actuators is constructed by the mode superposition method. With the dynamical model, simulations are implemented to suppress the free vibration of the flexible beam. Moreover, experiments are carried out to verify the effectiveness of the multivariable minimum variance self-tuning control for vibration suppression of the flexible structure. The control results clearly show that the free vibration amplitude of the cantilevered beam with two control voltages applied to the two piezoelectric patches is less than that with one control voltage applied to the first piezoelectric actuator. Thus, multivariable minimum variance self-tuning control is a more efficient approach for suppressing multimodal vibration for a smart flexible beam with two piezoelectric actuators compared with the conventional velocity feedback control.
机译:它已经很受欢迎,几十年来,空间结构的振动被智能执行器抑制。然而,当应用控制策略以减弱智能结构的振动时,较高模式振动通常是动力的。此外,如果用多致动器抑制智能结构的多模振动,则将采用适当的多变量控制定律来解决由智能结构的多致动器引起的耦合问题。因此,在本文中,采用自适应控制采用具有两个压电贴片的智能柔性光束的两个模态振动的去耦技术。拟议的控制规律采用多变量的最低方差自调整控制设计。考虑到模态振动的前两个订单,根据沿着梁的纵向的第一两个逆模板振动的应变,在柔性光束上配置两个压电贴片。通过模式叠加法构造具有两个压电致动器的柔性光束的动态模型。利用动态模型,实施模拟以抑制柔性光束的自由振动。此外,进行实验以验证多变量最小方差自调整控制的有效性,用于振动抑制柔性结构。控制结果清楚地表明,悬臂梁的自由振动幅度具有施加到两个压电贴片的两个控制电压的小于施加到第一压电致动器的一个控制电压。因此,多变量的最小方差自调谐控制是一种更有效的方法,用于抑制具有两个压电致动器的智能柔性光束的多峰振动,与传统的速度反馈控制相比。

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