Optics and Precision Engineering, Volume. 30, Issue 23, 3081(2022)

Compensation of hysteresis effect of piezoelectric fast steering mirror in dynamic target tracking of ground-based large aperture telescope system

Yongkai LIU1,*... Furui LÜ1,2, Shijie GAO1, Yongting DENG1 and Hao WU1 |Show fewer author(s)
Author Affiliations
  • 1Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun30033, China
  • 2University of Chinese Academy of Sciences, Beijing100049, China
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    References(19)

    [1] [1] 1唐涛, 马佳光, 陈洪斌, 等. 光电跟踪系统中精密控制技术研究进展[J]. 光电工程, 2020, 47(10): 3-31. doi: 10.12086/oee.2020.200315TANGT, MAJ G, CHENH B, et al. A review on precision control methodologies for optical-electric tracking control system[J]. Opto-Electronic Engineering, 2020, 47(10): 3-31.(in Chinese). doi: 10.12086/oee.2020.200315

    [2] S MOHITH, A R UPADHYA, K P NAVIN et al. Recent trends in piezoelectric actuators for precision motion and their applications: a review. Smart Materials and Structures, 30(2021).

    [3] [3] 3刘鑫, 李新阳, 杜睿. 压电倾斜镜迟滞非线性建模及逆补偿控制[J]. 光电工程, 2020, 47(4): 19-25.LIUX, LIX Y, DUR. Modeling and inverse compensation control of hysteresis nonlinear characteristics of piezoelectric steering mirror[J]. Opto-Electronic Engineering, 2020, 47(4): 19-25.(in Chinese)

    [4] [4] 4朱世伟, 盛磊, 刘永凯, 等. 基于能量反馈的单模光纤激光章动耦合算法[J]. 中国激光, 2019, 46(2): 165-170. doi: 10.3788/CJL201946.0206001ZHUSH W, SHENGL, LIUY K, et al. Laser nutation coupling algorithm for single mode fiber based on energy feedback[J]. Chinese Journal of Lasers, 2019, 46(2): 165-170.(in Chinese). doi: 10.3788/CJL201946.0206001

    [5] [5] 5朱凡, 李颖先, 谭久彬. 高精度激光光束准直系统设计[J]. 光学 精密工程, 2020, 28(4): 817-826.ZHUF, LIY X, TANJ B. Design of high-accuracy laser beam collimation system[J]. Opt. Precision Eng., 2020, 28(4): 817-826.(in Chinese)

    [6] T CHAKRABORTY, B Y CHEN, S DAETWYLER et al. Converting lateral scanning into axial focusing to speed up three-dimensional microscopy. Light: Science & Applications, 9, 165(2020).

    [7] P G HARPER. Kinematic theory of piezoelectric hysteresis. Journal of Applied Physics, 52, 6851-6855(1981).

    [8] [8] 8范伟, 傅雨晨, 于欣妍. 压电陶瓷驱动器的迟滞非线性规律[J]. 光学 精密工程, 2019, 27(8): 1793-1799.FANW, FUY CH, YUX Y. Hysteresis nonlinear law of piezoelectric ceramic actuator[J]. Opt. Precision Eng., 2019, 27(8): 1793-1799.(in Chinese)

    [9] D V SABARIANAND et al. A review on control strategies for compensation of hysteresis and creep on piezoelectric actuators based micro systems. Mechanical Systems and Signal Processing, 140, 106634(2020).

    [10] J Q GAN, X M ZHANG. A review of nonlinear hysteresis modeling and control of piezoelectric actuators. AIP Advances, 9(2019).

    [11] [11] 11刘玠, 安坤, 王亚锋, 等. 基于神经网络的Preisach磁滞模型的建模[J]. 组合机床与自动化加工技术, 2022(3): 5-8.LIUJ, ANK, WANGY F, et al. Modeling of preisach hysteresis model based on neural network[J]. Modular Machine Tool & Automatic Manufacturing Technique, 2022(3): 5-8.(in Chinese)

    [12] [12] 12于志亮, 王岩, 曹开锐, 等. 压电陶瓷执行器迟滞补偿及复合控制[J]. 光学 精密工程, 2017, 25(8): 2113-2120. doi: 10.3788/OPE.20172508.2113YUZH L, WANGY, CAOK R, et al. Hysteresis compensation and composite control for Piezoelectric actuator[J]. Opt. Precision Eng., 2017, 25(8): 2113-2120.(in Chinese). doi: 10.3788/OPE.20172508.2113

    [13] Z LI, J J SHAN, U GABBERT. Inverse compensation of hysteresis using krasnoselskii-pokrovskii model. IEEE/ASME Transactions on Mechatronics, 23, 966-971(2018).

    [14] [14] 14李致富, 黄楠, 钟云, 等. 压电驱动器迟滞非线性的分数阶建模及实验验证[J]. 光学 精密工程, 2020, 28(5): 1124-1131.LIZ F, HUANGN, ZHONGY, et al. Fractional order modeling and experimental verification of hysteresis nonlinearities in piezoelectric actuators[J]. Opt. Precision Eng., 2020, 28(5): 1124-1131.(in Chinese)

    [15] [15] 15杨晓京, 胡俊文, 李庭树. 压电微定位台的率相关动态迟滞建模及参数辨识[J]. 光学 精密工程, 2019, 27(3): 610-618.YANGX J, HUJ W, LIT SH. Rate-dependent dynamic hysteresis modeling of piezoelectric micro platform and its parameter identification[J]. Opt. Precision Eng., 2019, 27(3): 610-618.(in Chinese)

    [16] [16] 16郭咏新, 张臻, 毛剑琴, 等. 超磁致伸缩作动器的率相关Hammerstein模型与H∞鲁棒跟踪控制[J]. 自动化学报, 2014, 40(2): 197-207.GUOY X, ZHANGZH, MAOJ Q, et al. Rate-dependent Hammerstein model and H∞ robust tracking control of giant magnetostrictive actuators[J]. Acta Automatica Sinica, 2014, 40(2): 197-207.(in Chinese)

    [17] [17] 17袁刚, 张小波, 王代华, 等. 压电式快速控制反射镜的迟滞特性及线性化[J]. 光学 精密工程, 2015, 23(6): 1650-1656. doi: 10.3788/OPE.20152306.1650YUANG, ZHANGX B, WANGD H, et al. Hysteresis and linearization of piezoelectric fast steering mirror[J]. Opt. Precision Eng., 2015, 23(6): 1650-1656.(in Chinese). doi: 10.3788/OPE.20152306.1650

    [18] [18] 18王昱棠, 张宇鹏, 徐钰蕾. 压电陶瓷驱动快速反射镜双闭环控制[J]. 仪器仪表学报, 2014, 35(S1): 68-72.WANGY T, ZHANGY P, XUY L. Dual-loop control strategy for fast-steering mirror driven by PZT[J]. Chinese Journal of Scientific Instrument, 2014, 35(S1): 68-72.(in Chinese)

    [19] [19] 19王玉坤, 胡立发, 王冲冲, 等. 液晶自适应光学系统中倾斜镜的建模与控制[J]. 光学 精密工程, 2016, 24(4): 771-779.WANGY K, HUL F, WANGC C, et al. Modeling and control of tip/tilt Mirror in liquid crystal adaptive optical system[J]. Opt. Precision Eng., 2016, 24(4): 771-779.(in Chinese)

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    Yongkai LIU, Furui LÜ, Shijie GAO, Yongting DENG, Hao WU. Compensation of hysteresis effect of piezoelectric fast steering mirror in dynamic target tracking of ground-based large aperture telescope system[J]. Optics and Precision Engineering, 2022, 30(23): 3081

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    Paper Information

    Received: Sep. 29, 2022

    Accepted: --

    Published Online: Jan. 10, 2023

    The Author Email: LIU Yongkai (liuyk@ciomp.ac.cn)

    DOI:10.37188/OPE.20223023.3081

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