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A Modified Comprehensive Model for Piezoelectric Stack Actuators and Corresponding Parameter Identification Method

机译:压电堆执行器的改进综合模型及相应的参数辨识方法

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In order to accurately model the hysteresis and dynamic characteristics of piezoelectric stack actuators (PSAs), consider that a linear force and a hysteresis force will be generated by piezoelectric wafers under the voltage applied to a PSA, and the total force suffering from creep will result in the forced vibration of the two-degree-of-freedom mass-spring-damper system composed of the equivalent mass, stiffness, and damping of the piezoelectric wafers and the bonding layers. A modified comprehensive model for PSAs is put forward by using a linear function, an asymmetrical Bouc-Wen hysteresis operator, and a creep function to model the linear force, the hysteresis force, and the creep characteristics, respectively. In this way, the effect of the bonding layers on the hysteresis and dynamic characteristics of PSAs can be analyzed via the modified comprehensive model. The experimental results show that the modified comprehensive model for PSAs with the corresponding parameter identification method can accurately portray the hysteresis and dynamic characteristics of PSAs fabricated by different layering/stacking processes. Finally, the theoretical analyzing on utilizing the modified comprehensive model to linearize the hysteresis characteristics and design the dynamic characteristics of PSAs is given.
机译:为了准确地建模压电叠层执行器(PSA)的磁滞和动态特性,请考虑在施加到PSA的电压下,压电晶片会产生线性力和磁滞力,并且将产生总蠕变力在两自由度质量弹簧阻尼器系统的强制振动中,该振动由压电晶片和粘结层的等效质量,刚度和阻尼组成。通过使用线性函数,非对称Bouc-Wen磁滞算子和蠕变函数分别对线性力,磁滞力和蠕变特性进行建模,提出了一种改进的PSA综合模型。这样,可以通过修改后的综合模型分析粘结层对PSA的滞后和动态特性的影响。实验结果表明,采用相应的参数辨识方法对PSA进行改进的综合模型可以准确地描述不同分层/堆叠工艺制造的PSA的滞后性和动态特性。最后,给出了利用改进的综合模型线性化磁滞特性和设计PSA动态特性的理论分析。

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