Inverse Compensation Based Synchronization Control of the Piezo-Actuated Fabry-Perot Spectrometer

被引:33
作者
Li, Zhi [1 ]
Shan, Jinjun [2 ]
机构
[1] Otto von Guericke Univ, Inst Mech, D-39106 Magdeburg, Germany
[2] York Univ, Dept Earth & Space Sci & Engn, Toronto, ON M3J IP3, Canada
基金
中国国家自然科学基金;
关键词
Coupled hysteresis effect; Fabry-Perot (F-P) system; inverse compensator; linear-quadratic-gaussian (LQG) control; neural network (NN); piezoelectric actuators (PEAs); TRACKING CONTROL; PREISACH MODEL; HYSTERESIS; SYSTEMS;
D O I
10.1109/TIE.2017.2711511
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, three parallel piezoelectric actuators (PEAs) are utilized in a Fabry-Perot (F-P) system for tuning the gap spacing between two optical lenses. Due to the nonlinear hysteresis effect in the PEAs and uneven preload conditions in the F-P system, the motion of the three PEAs is not synchronized and their input and output responses show coupled hysteresis behaviors. To compensate for the coupled hysteresis effects, a coupled hysteresis model combining with available hysteresis operators and neural network is proposed and its inverse compensator is constructed. Since the inverse compensation method is an open-loop method, the synchronization of three PEAs cannot be guaranteed. To overcome this problem, an linear-quadratic-gaussian (LQG) controller with a synchronization strategy is deployed with the developed inverse compensation method. The experimental results demonstrate that the proposed method can effectively mitigate the coupled hysteresis effects and guarantee the synchronized motion of the three PEAs.
引用
收藏
页码:8588 / 8597
页数:10
相关论文
共 50 条
  • [21] Evolutionary algorithm based feedforward control for contouring of a biaxial piezo-actuated stage
    Lin, Chih-Jer
    Chen, Shu-Yin
    MECHATRONICS, 2009, 19 (06) : 829 - 839
  • [22] A Hybrid Control Approach for Precise Positioning of a Piezo-Actuated Stage
    Nafea, M.
    Kazi, S.
    Mohamed, Z.
    Ali, M. S. Mohamed
    2014 14TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND SYSTEMS (ICCAS 2014), 2014, : 667 - 671
  • [23] Adaptive Control for Piezo-Actuated Micro/Nano Positioning System
    Chen, Xinkai
    Wen, Shengjun
    Wang, Aihui
    PROCEEDINGS OF THE 2017 12TH IEEE CONFERENCE ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ICIEA), 2017, : 1248 - 1253
  • [24] Damping Control of Piezo-Actuated Nanopositioning Stages With Recursive Delayed Position Feedback
    Li, Chun-Xia
    Ding, Ye
    Gu, Guo-Ying
    Zhu, Li-Min
    IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2017, 22 (02) : 855 - 864
  • [25] Positive acceleration, velocity and position feedback based damping control approach for piezo-actuated nanopositioning stages
    Li, Linlin
    Li, Chun-Xia
    Gu, Guoying
    Zhu, Li-Min
    MECHATRONICS, 2017, 47 : 97 - 104
  • [26] Integral Sliding Mode Control of Piezo-actuated Stages with the Model-based Iterative Feed-forward Compensating Hysteresis
    Xu, Rui
    Pan, Wei
    Wang, Yifan
    Zhou, Miaolei
    2019 CHINESE AUTOMATION CONGRESS (CAC2019), 2019, : 2179 - 2184
  • [27] Dual-Notch-Based Repetitive Control for Tracking Lissajous Scan Trajectories With Piezo-Actuated Nanoscanners
    Li, Linlin
    Huang, Wei-Wei
    Wang, Xiangyuan
    Zhu, LiMin
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2022, 71
  • [28] Neural Networks-Based PID Precision Motion Control of a Piezo-Actuated Microinjector
    Yan, Yizheng
    Xu, Qingsong
    INTELLIGENT ROBOTICS AND APPLICATIONS, ICIRA 2019, PART VI, 2019, 11745 : 407 - 418
  • [29] A Deep Serial Model and Predictive Control for Piezo-Actuated Positioning Stages
    Dong, Fei
    Xie, Hongyang
    Hu, Qinglei
    You, Keyou
    Zhong, Jianpeng
    IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2024,
  • [30] Adaptive Sliding-Mode Position Control for Piezo-Actuated Stage
    Chen, Xinkai
    Hisayama, Takeshi
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2008, 55 (11) : 3927 - 3934