压电弯曲驱动器的辨识与控制

M. N. Maslan, M. Mailah, I. Darus
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引用次数: 4

摘要

本文研究了高度非线性迟滞压电作动器的传递函数及其逆函数的确定。基于弯曲式压电驱动器的输入输出数据的直接测量,采用了一种系统识别(SI)技术。弯曲式压电驱动器安装在适当设计的平台上,并配备适当的仪器。最后,通过严格的分析程序逼近了致动器的TF模型。对结果进行验证和确认,以确保所获得的传递函数实际上是可行的和可实现的。还进行了一个说明性案例研究,涉及使用采用传统比例积分导数(PID)控制器和PID与主动控制(PIDAFC)的闭环控制方法控制已识别的压电致动器。研究结果清楚显示建议计划的成效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification and Control of a Piezoelectric Bender Actuator
This paper focuses on determining the transfer function (TF) of a highly nonlinear and hysteretic piezoelectric actuator and its inverse. A system identification (SI) technique was employed based on the direct measurements of the input-output data from a bender type piezoelectric actuator mounted on a suitably designed platform equipped with appropriate instrumentation. Eventually, the actuator TF models were approximated through a rigorous analytical procedure. Verification and validation of the results are performed to ensure that the transfer functions obtained are practically viable and implementable. An illustrative case study is also carried out involving the control of the identified piezo actuator using closed-loop control methods that employ a conventional proportional-integral-derivative (PID) controller and PID with active force control (PIDAFC). The outcome of the study clearly indicates the effectiveness of the proposed schemes.
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