• Optics and Precision Engineering
  • Vol. 30, Issue 23, 3081 (2022)
Yongkai LIU1,*, Furui LÜ1,2, Shijie GAO1, Yongting DENG1, and Hao WU1
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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    DOI: 10.37188/OPE.20223023.3081 Cite this Article
    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 Copy Citation Text show less

    Abstract

    To improve the dynamic target tracking performance of optical systems based on piezoelectric fast mirrors, the effect of hysteresis nonlinearity and the corresponding compensation methods are investigated in this study. First, based on the Prandtl–Ishlinskii (P-I) model, a rate dependent hysteresis model in series with the P-I model and the auto regressive empirical model is established. Then, a rate dependent model compound control compensation algorithm based on P-I is proposed. Finally, an experimental platform using a piezoelectric fast mirror is built to identify the hysteresis effect of piezoelectric ceramics, and a feedforward controller is designed based on its inverse model. Simultaneously, the optimization effect of the hysteresis compensation method on the dynamic target tracking system is verified. The experimental results show that the rate dependent model based on P-I is suitable for moving target tracking systems. When the compound control compensation algorithm is applied, the error suppression bandwidth of the dynamic target tracking system is increased by 26 Hz. Thus, the error suppression capability of the dynamic target tracking system is effectively improved.
    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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