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Neural network control of elastic waves transformations and suppression of amplitudes of oscillations in laminated piezoelectric composites

机译:弹性波的神经网络控制层压压电复合材料中振动振动的变换及抑制

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The converse piezoelectric effect is used to suppress the amplitudes or to modify the frequency of elastic waves which propagated along thickness of laminated metal-ceramic plate when on the face surface of a plate is applied the oscillating pressure. The control problems involve the minimisation of quadratic cost functional depending on the velocity of vibration of the back surface of the plate and functional depending on the displacement of the back surface by using the adjustment of the neural network with the input signals as the voltages of sensors piezoelectric layers and the output signals as voltages applied to the actuators PZT-ceramic layers. The presented results are concerned with computer simulation of the proposed animated composite materials as joint mechanic, neural network and electronic system (mechatronic system with scale level of the order 10{sup}(-3)÷10{sup}(-4) meter and deformational waves interactions), which has been named as the Matrix Electronic Materials (MEM; The results of modelling of elastic waves transformations have been shown an ability of MEM to suppress on the order the amplitudes of oscillations.
机译:逆转压电效应用于抑制振幅或改变沿着层叠金属陶瓷板的厚度传播的弹性波的频率,当施加振荡压力时。控制问题涉及根据板的后表面的振动的速度和根据后表面的速度通过使用与传感器的电压的输入信号的调节来最小化二次成本函数的最小化。压电层和输出信号作为施加到致动器PZT陶瓷层的电压。所提出的结果涉及所提出的动画复合材料作为联合机械师,神经网络和电子系统的计算机模拟(机电调整系统10 {SUP}( - 3)÷10{sup}( - 4)仪表和变形波相互作用,已被命名为矩阵电子材料(Mem;弹性波的建模结果已被示出MEM以抑制振荡幅度的能力。

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