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首页> 外文期刊>Acta Mechanica >Vibration control of a smart beam structure subjected to actuator uncertainty: Experimental verification
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Vibration control of a smart beam structure subjected to actuator uncertainty: Experimental verification

机译:受执行器不确定性影响的智能梁结构的振动控制:实验验证

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摘要

This paper presents a robust vibration control of a smart beam structure featuring the piezoceramic actuator. The hysteretic behavior of the actuator is experimentally identified and incorporated with the dynamic model to take account for the system uncertainty. The controller is then designed using the quantitative feedback theory that is a frequency domain technique to achieve robust control performances. The controller is experimentally realized and control responses are evaluated in time domain for both transient and forced vibration excitations.
机译:本文介绍了具有压电陶瓷驱动器的智能梁结构的鲁棒振动控制。通过实验确定执行器的磁滞行为,并将其与动态模型合并以考虑系统不确定性。然后使用定量反馈理论设计控制器,该定量反馈理论是一种频域技术,可实现鲁棒的控制性能。该控制器是通过实验实现的,并且可以在时域内评估瞬态和强迫振动激励的控制响应。

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