首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Adaptive Robust Sliding Mode Vibration Control of a Flexible Beam Using Piezoceramic Sensor and Actuator: An Experimental Study
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Adaptive Robust Sliding Mode Vibration Control of a Flexible Beam Using Piezoceramic Sensor and Actuator: An Experimental Study

机译:使用压电陶瓷传感器和执行器的柔性束的自适应鲁棒滑动模式振动控制:实验研究

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This paper presents an experimental study of an adaptive robust sliding mode control scheme based on the Lyapunov’s direct method for active vibration control of a flexible beam using PZT (lead zirconate titanate) sensor and actuator. PZT, a type of piezoceramic material, has the advantages of high reliability, high bandwidth, and solid state actuation and is adopted here in forms of surface-bond patches for vibration control. Two adaptive robust sliding mode controllers for vibration suppression are designed: one uses a discontinuous bang-bang robust compensator and the other uses a smooth compensator with a hyperbolic tangent function. Both controllers guarantee asymptotic stability, as proved by the Lyapunov’s direct method. Experimental results verified the effectiveness and the robustness of both adaptive sliding mode controllers. However, from the experimental results, the bang-bang robust compensator causes small-magnitude chattering because of the discontinuous switching actions. With the smooth compensator, vibration is quickly suppressed and no chattering is induced. Furthermore, the robustness of the controllers is successfully demonstrated with ensured effectiveness in vibration control when masses are added to the flexible beam.
机译:本文介绍了基于Lyapunov&#X2019的自适应鲁棒滑动模式控制方案的实验研究。使用PZT(锆钛酸钛合金)传感器和致动器的柔性梁的主动振动控制的直接方法。 PZT是一种压电陶瓷材料,具有高可靠性,高带宽和固态致动的优点,并以用于振动控制的表面粘合贴片的形式采用。设计了两个用于振动抑制的自适应鲁棒滑动模式控制器:一个使用不连续的Bang-Bang稳健的补偿器,另一个使用具有双曲线切线功能的平滑补偿器。这两个控制器都保证了渐近稳定性,如Lyapunov’ S直接方法所证明。实验结果验证了自适应滑模控制器的有效性和鲁棒性。然而,从实验结果中,Bang-Bang稳健的补偿器由于不连续的切换动作而导致小幅度的抖动。利用光滑的补偿器,振动快速抑制,诱导抖动。此外,当脉质加入到柔性光束时,控制器的稳健性通过确保在振动控制中的振动控制的效果来证明。

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