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Multimodal Active Vibration Suppression of a Flexible Structure by Loop Shaping

机译:回路成形抑制柔性结构的多峰主动振动

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This paper reports multimodal vibration control of a flexible beam structure with piezoceramic actuators and sensors using the loop shaping method. These piezoceramic patch actuators and sensors are surface-bonded on the flexible beam. The non-parametric identification of the flexible beam structure is carried out using the Schroeder wave. The identified open loop model is then used for loop shaping based on the extended sensitivity charts. A loop shaping compensator is designed to achieve multimodal vibration suppression. Numerical results showed a reduction of 8 decibels for first mode, 12-14 decibels for second and third mode, respectively. Experimental results closely match the simulation results. Furthermore, the results of loop shaping method are compared with those of the methods of LQR (Linear Quadratic Regulator) and pole-placement control, which are designed using state space models. Comparisons show that the loop shaping method requires less control effort while maintaining the effectiveness in vibration suppression.
机译:本文报道了采用环成形方法的压电陶瓷作动器和传感器对柔性梁结构的多模式振动控制。这些压电陶瓷贴片致动器和传感器表面结合在柔性梁上。柔性梁结构的非参数识别是使用Schroeder波进行的。然后,基于扩展的灵敏度图,将识别出的开环模型用于环路整形。环路整形补偿器设计用于实现多模式振动抑制。数值结果表明,第一模式减少了8分贝,第二和第三模式减少了12-14分贝。实验结果与仿真结果非常吻合。此外,将环路整形方法的结果与使用状态空间模型设计的LQR(线性二次调节器)和极点放置控制方法的结果进行了比较。比较表明,在保持振动抑制效果的同时,回路整形方法需要较少的控制工作。

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