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Smart Sensors and Active Adaptive Control Exploitation for Vibration Damping of a Cantilever Beam

机译:悬臂梁减振的智能传感器和主动自适应控制开发

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In this work we present the first experimental results of a new multi-disciplinary activity concerning active structural control. Specifically, exploiting Fiber Bragg Grating (FBG) sensors and Piezoelectric actuators, an adaptive control approach was adopted to damp the vibrations of a cantilever beam. The strain sensor used for the structural vibration detection is a Bragg Grating written on a single-mode optical fiber for telecom applications. The reading technique used to detect the variations in the λ_B of the grating due to the local strain variations, exploits a narrow band laser tuned to the mean wavelength of the grating reflectance spectrum roll-off, as it will be better explained in the following. The results obtained so far demonstrate how the combined application of novel strain sensors and a clever control approach can provide a benefit in terms of bandwidth, damping speed and reduced design effort.
机译:在这项工作中,我们介绍了有关主动结构控制的新的多学科活动的第一个实验结果。具体而言,利用光纤布拉格光栅(FBG)传感器和压电致动器,采用了自适应控制方法来衰减悬臂梁的振动。用于结构振动检测的应变传感器是布拉格光栅,写在电信应用的单模光纤上。用于检测由于局部应变变化而引起的光栅λ_B变化的读取技术采用了调谐到光栅反射光谱滚降的平均波长的窄带激光,这将在下面进行更好的解释。迄今为止获得的结果表明,新颖的应变传感器和巧妙的控制方法的组合应用如何在带宽,阻尼速度和减少的设计工作方面带来好处。

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