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首页> 外文期刊>Journal of vibration and control: JVC >Adaptive fuzzy sliding mode control for vibration suppression of a rotating carbon nanotube-reinforced composite beam
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Adaptive fuzzy sliding mode control for vibration suppression of a rotating carbon nanotube-reinforced composite beam

机译:旋转碳纳米管增强复合梁振动抑制自适应模糊滑模控制

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摘要

In this paper, the robust vibration control of a rotating carbon nanotube reinforced composite beam subjected to a temperature rise is studied. The governing mathematical partial differential equations are derived by Hamilton's principle based on Euler-Bernoulli beam theory. The Galerkin method is then used to obtain the temporal ordinary differential equations and therefore to perform vibration analysis. For the purpose of vibration control, piezoelectric patches are used as sensors to measure the displacement of the beam and as actuators to implement control forces. A model-free adaptive fuzzy sliding mode controller is utilized to suppress the vibration of the rotating carbon nanotube reinforced composite beam. Since the plant's state vector cannot be measured for control purposes and only the piezoelectric sensor's output is available, a model-free adaptive fuzzy sliding mode observer is proposed here. Simulation studies demonstrate the effectiveness of the proposed method.
机译:本文研究了经过温度升高的旋转碳纳米管增强复合梁的鲁棒振动控制。 管理数学偏微分方程是基于Euler-Bernoulli光束理论的原理推导出来的。 然后使用Galerkin方法来获得时间常微分方程,从而进行振动分析。 出于振动控制的目的,压电贴片用作传感器,以测量光束的位移和致动器以实现控制力。 一种无模型的自适应模糊滑动模式控制器用于抑制旋转碳纳米管增强复合梁的振动。 由于工厂的状态矢量无法测量控制目的,并且只有压电传感器的输出可用,这里提出了一种无模型自适应模糊滑动模式观察者。 仿真研究表明了该方法的有效性。

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