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首页> 外文期刊>Journal of intelligent material systems and structures >Active vibration control of a smart functionally graded piezoelectric material plate using an adaptive fuzzy controller strategy
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Active vibration control of a smart functionally graded piezoelectric material plate using an adaptive fuzzy controller strategy

机译:使用自适应模糊控制器策略的智能功能梯度压电材料板的主动振动控制

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摘要

In this article, the active vibration control of a smart structure made out of a single functionally graded piezoelectric material layer, equipped with a network of discrete electrodes, is studied. The material properties vary continuously across the direction of thickness, so that top and bottom surfaces consist of pure PZT4 and the mid surface is composed of pure aluminium. The percolation phenomenon is taken into account. A functionally graded piezoelectric material plate finite element based on the first-order shear deformation theory hypothesis and layer-wise approximation for electric potential is implemented. An optimization procedure is considered to define the relevant electrodes for actuators and sensors, based on controllable and observable criteria. An adaptative fuzzy controller system is used, activating with relevance the actuators according to the most excited eigenmodes. Simulations show the effectiveness of this kind of concept.
机译:在本文中,研究了由配备有离散电极网络的单一功能渐变压电材料层制成的智能结构的主动振动控制。材料特性在厚度方向上连续变化,使得顶部和底表面由纯PZT4组成,中间表面由纯铝组成。考虑到渗透现象。基于一阶剪切变形理论假设的功能梯度压电材料板有限元,并实现了电势的层面近似。基于可控和可观察的标准,考虑了优化过程来定义致动器和传感器的相关电极。使用适配模糊控制器系统,根据最激动的特征模型,用致动器的相关性激活。模拟显示了这种概念的有效性。

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