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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Modeling the Vibrational Dynamics of Piezoelectric Actuator by System Identification Technique
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Modeling the Vibrational Dynamics of Piezoelectric Actuator by System Identification Technique

机译:利用系统识别技术对压电执行器的振动动力学建模

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Actuators based on smart materials such as piezoelectric actuators (PEAs) are widely used in many applications to transform electrical signal to mechanical signal and vice versa. However, the major drawbacks for these smart actuators are hysteresis nonlinear, creep and residual vibration. In this paper, PEAs are used for active vibration application. Therefore, a model of PEA must be established to control the vibration that occurs in the system. The frequencies of 1 Hz, 20 Hz and 50 Hz were tested on the PEAs. The results obtained from the experimental were used to develop transfer function model by employing system identi?cation technique. Meanwhile, the model validation was based on level of models ?tness to estimation data, mean squared error (MSE), ?nal prediction error (FPE) and correlation test. The experimental result showed that the displacement of the actuator is inversely proportional to the frequency. The following consequences caused the time response criteria at 50 Hz achieved smallest overshoot and fastest response of rise time and settling time.
机译:基于智能材料的执行器,例如压电执行器(PEA),已广泛用于许多应用中,以将电信号转换为机械信号,反之亦然。但是,这些智能执行器的主要缺点是磁滞非线性,蠕变和残留振动。在本文中,PEA用于主动振动应用。因此,必须建立PEA模型来控制系统中发生的振动。在PEA上测试了1 Hz,20 Hz和50 Hz的频率。从实验中获得的结果用于通过采用系统识别技术来建立传递函数模型。同时,模型验证是基于模型对估计数据的适应性,均方误差(MSE),最终预测误差(FPE)和相关性测试的水平。实验结果表明,执行器的位移与频率成反比。以下后果导致50 Hz的时间响应标准达到最小的过冲,并且上升时间和建立时间的响应最快。

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