Infrared and Laser Engineering, Volume. 50, Issue 11, 20210194(2021)

Decoupling control of fast steering mirror based on dual feedforward + dual neural network adaptive

Rui Wang1,2, Xiuqin Su1,3, Yongming Qiao1, Tao Lv1, Xuan Wang1,2, and Kaidi Wang1,2
Author Affiliations
  • 1Key Laboratory of Space Precision Measurement Technology, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an 710119, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Pilot National Laboratory for Marine Science and Technology, Qingdao 266237, China
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    Two-axis fast steering mirror based on flexure hinge support and voice coil motor drive is a strong coupling system with two inputs and two outputs. The coupling between X-axis and Y-axis greatly reduces the positioning accuracy of the fast steering mirror. It is difficult to achieve high precision decoupling control by using traditional PID control algorithm. Based on the centrosymmetric and axisymmetric two-axis fast steering mirror, the coupling sources of the two-axis fast steering mirror—DC coupling component and non-DC coupling component were analyzed theoretically, and the coupling physical model of between X-axis and Y-axis was established. A dual feedforward + dual neural network adaptive decoupling control algorithm was proposed to respectively compensate DC coupling components and non-DC coupling components. Experimental results show that, compared with the traditional PID control algorithm, the coupling degree of the proposed algorithm is reduced from about 5% to less than 1.0‰, which significantly improves the positioning accuracy from about 2.5% to less than 0.5‰.

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    Rui Wang, Xiuqin Su, Yongming Qiao, Tao Lv, Xuan Wang, Kaidi Wang. Decoupling control of fast steering mirror based on dual feedforward + dual neural network adaptive[J]. Infrared and Laser Engineering, 2021, 50(11): 20210194

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    Paper Information

    Category: Optical design

    Received: Mar. 24, 2021

    Accepted: --

    Published Online: Dec. 7, 2021

    The Author Email:

    DOI:10.3788/IRLA20210194

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