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Active neuro-adaptive vibration suppression of a smart beam

机译:智能光束的主动神经自适应振动抑制

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摘要

In this research, an active vibration suppression of a smart beam having piezoelectric sensor and actuators is investigated by designing separate controllers comprising a linear quadratic regulator and a neural network. Firstly, design of a smart beam which consists of a cantilever aluminum beam with surface bonded piezoelectric patches and a designed mechanism having a micro servomotor with a mass attached arm for obtaining variations in the frequency response function are presented. Secondly, the frequency response functions of the smart beam are investigated experimentally by using different piezoelectric patch combinations and the analytical models of the smart beam around its first resonance frequency region for various servomotor arm angle configurations are obtained. Then, a linear quadratic regulator controller is designed and used to simulate the suppression of free and forced vibrations which are performed both in time and frequency domain. In parallel to simulations, experiments are conducted to observe the closed loop behavior of the smart beam and the results are compared as well. Finally, active vibration suppression of the smart beam is investigated by using a linear controller with a neural network based adaptive element which is designed for the purpose of overcoming the undesired consequences due to variations in the real system.
机译:在这项研究中,通过设计包含线性二次调节器和神经网络的单独控制器,研究了具有压电传感器和执行器的智能梁的主动振动抑制。首先,提出了一种智能梁的设计,该智能梁由带有表面粘结压电片的悬臂铝梁组成,并设计了一种机构,该机构具有一个微型伺服电动机,该微型伺服电动机带有一个质量附着的臂,用于获得频率响应函数的变化。其次,通过使用不同的压电贴片组合,对智能梁的频率响应函数进行了实验研究,并获得了针对各种伺服电机臂角配置的智能梁在其第一共振频率区域附近的解析模型。然后,设计了一个线性二次调节器控制器,并将其用于模拟在时域和频域中执行的自由振动和强制振动的抑制。与模拟并行,进行实验以观察智能光束的闭环行为,并比较结果。最后,通过使用具有基于神经网络的自适应元件的线性控制器来研究智能光束的主动振动抑制,该线性控制器旨在克服由于实际系统中的变化而导致的不良后果。

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