• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2026, Vol. 62 ›› Issue (4): 75-85.doi: 10.3901/JME.260107

• 仪器科学与技术 • 上一篇    

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压电致动器的精密位力自感知方法研究

王彧1, 崔玉国1, 杨依领1, 崔志英2, 毛昊阳2, 娄军强1   

  1. 1. 宁波大学宁波市微纳运动及智能控制重点实验室 宁波 315211;
    2. 宁波永新光学股份有限公司 宁波 315048
  • 收稿日期:2025-03-06 修回日期:2025-09-01 发布日期:2026-04-02
  • 作者简介:王彧,男,1999年出生。主要研究方向为纳米定位。E-mail:2311090205@nbu.edu.cn
    崔玉国(通信作者),男,1971年出生,博士,教授,博士研究生导师。主要研究方向为纳米定位及精密测量。E-mail:cuiyuguo@nbu.edu.cn
  • 基金资助:
    国家自然科学基金联合基金重点(U23A20618)、国家自然科学基金面上(52075273)和宁波市科技创新2025重大专项(2020Z070)资助项目。

Research on Precision Self-sensing Method for Displacement and Force of Piezoelectric Actuator

WANG Yu1, CUI Yuguo1, YANG Yiling1, CUI Zhiying2, MAO Haoyang2, LOU Junqiang1   

  1. 1. Ningbo Key Laboratory of Micro-nano Motion and Intelligent Control, Ningbo University, Ningbo 315211;
    2. Ningbo Yongxin Optics Co., Ltd., Ningbo 315048
  • Received:2025-03-06 Revised:2025-09-01 Published:2026-04-02

摘要: 降低微纳定位系统的成本以及设计难度,研究压电致动器的精密位力(即输出位移与输出力)自感知方法。首先,根据压电致动器在外力和电压下产生变形,同时压电晶片产生电极化而在其表面形成电荷,进而基于第一类压电基本方程,并考虑压电致动器绝缘电阻与运放偏置电流的影响,提出了能够精密、简便地自感知压电致动器输出位移与输出力的电流积分法。其次,给出影响自感知精度的运放偏置电流、压电致动器绝缘电阻、荷位常数、荷力常数的精密辨识方法,并通过试验进行了相应辨识。最后,试验验证所提出的精密、简便自感知方法的有效性,结果表明所提出的自感知方法不仅具有较高的精度、分辨率以及稳定性,而且能够较好地反映压电致动器输出位移与输出力的蠕变与迟滞特性。

关键词: 压电致动器, 位移自感知, 力自感知, 电流积分, 参数辨识

Abstract: In order to reduce the cost and design difficulty of the micro-nano positioning system, a self-sensing method is used to obtain the output displacement and force of the piezoelectric actuator. First, based on the fact that the piezoelectric actuator deforms under external forces and voltages, while the piezoelectric wafer forms a charge on its surface by generating electrodes, and then based on the first type of piezoelectric fundamental equations and considering the effects of the piezoelectric actuator’s leakage resistance and the operational amplifier’s bias current, the current-integration method is proposed to be able to precisely and conveniently self-perceive the piezoelectric actuator’s output displacements and forces. Secondly, the precise identification methods of op-amp bias current, piezoelectric actuator leakage resistance, charge-displacement coefficient, and charge-force coefficient, which affect the accuracy of self-awareness, are given, and the corresponding identification is carried out through experiments. Finally, the effectiveness of the proposed precise and simple self-perception method is experimentally verified, and the results show that the proposed self-aware method not only has high accuracy, resolution, and stability but also can better reflect the creep and hysteresis characteristics of the output displacement and force of piezoelectric actuators.

Key words: piezoelectric actuators, displacement self-sensing, force self-sensing, current integration, parameter identification

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