• Infrared and Laser Engineering
  • Vol. 49, Issue 10, 20200056 (2020)
Min Zhang1, Bo Li2, and Yunjie Teng1
Author Affiliations
  • 1National and Local Joint Engineering Research Center of Space Optoelectronics Technology, Changchun University of Science and Technology, Changchun 130022, China
  • 2Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanya 572000, China
  • show less
    DOI: 10.3788/IRLA20200056 Cite this Article
    Min Zhang, Bo Li, Yunjie Teng. Design of dynamic tracking for periscopic laser communication terminal system based on iterative learning control[J]. Infrared and Laser Engineering, 2020, 49(10): 20200056 Copy Citation Text show less
    References

    [1] Duorui Gao, Tianlun Li, Yue Sun, . Latest developments and trends of space laser communication. Chinese Optics, 11, 901-912(2018).

    [2] Rosheim M E, Sauter G F. Free space optical communications system pointer[C] SPIE Proc, 2003, 497: 126133.

    [3] Heine F, Muhlnikel G, Zech H, et al. LCT f the European data relay system: in bit commissioning of the Alphasat Sentinel1A LCTs[C]SPIE Proc, 2015, 9354: 1−6.

    [4] Z Xin, Y Q Liu, Y Song. Line of sight pointing technology for laser communication system between aircrafts. Optical Engineering, 56, 1-4(2017).

    [5] Weiming Zhang, Zelin Shi, Depeng Ma. Control method of high accuracy video-stabilization with airstream disturbance for opto-electronic system. Infrared and Laser Engineering, 48, 1013008(2019).

    [6] Jiaqi Zhang, Lizhong Zhang, Keyan Dong, . Coarse tracking technology of secondary imaging coude-type laser communication terminal. Chinese Optics, 11, 120-129(2018).

    [7] Yongting Deng, Hongwen Li, Jianli Wang. Methods of improving closed-loop bandwidth for large telescope control systems. Infrared and Laser Engineering, 47, 1237001(2018).

    [8] Zhenjun Zhang, Jiancheng Wang, Xiangming Cheng, . Measurement and calibration of optical axis changes for multi-function astronomical theodolite. Optics and Precision Engineering, 27, 2321-2329(2019).

    [9] V W S Chan. Optical space communications. IEEE J Quantum Electron, 6, 959-975(2002).

    [10] Liying Tan, Shichen Wu, Qiqi Han, . Coarse tracking of periscope-type satellite optical communication terminals. Optics and Precision Engineering, 20, 270-274(2012).

    [11] W Gawronski. Control and pointing challenges of large antennas and telescopes. IEEE Transactions on Control Systems Technology, 15, 276-289(2007).

    [12] D Flieller, N K Nuyen, P Wira, et al. A self-learning solution for torque ripple reduction for nonsinusoidal permanent-magnet motor drives based on artificial neural networks. IEEE Transactions on Industrial Electronics, 61, 655-666(2014).

    [13] Guoli Kong, Yu Su. Development of a multi-pass cell temperature control system for laser gas isotope detection. Infrared and Laser Engineering, 48, 0805006(2019).

    [14] A Consoli, G Scelba, G Scarcella, et al. An effective energy-saving scalar control for industrial IPMSM derives. IEEE Transactions on Industrial Electronics, 60, 3658-3669(2013).

    [15] Xiang Li, Shouda Wang, Jiaqi Zhang, . Loadable laser communication optical antenna. Infrared and Laser Engineering, 48, 1118001(2019).

    [16] Y Siyuan, W Feng, W Qiang, et al. Theoretical analysis and experimental study of constraint boundary conditions for acquiring the beacon in satellite-ground laser communications. Optics Communications, 40, 585-592(2017).

    CLP Journals

    [1] Genping Lei, Tingting Liu. Fuzzy sliding mode robust control method for a three-axis airborne optoelectronic system[J]. Infrared and Laser Engineering, 2022, 51(8): 20210580

    Min Zhang, Bo Li, Yunjie Teng. Design of dynamic tracking for periscopic laser communication terminal system based on iterative learning control[J]. Infrared and Laser Engineering, 2020, 49(10): 20200056
    Download Citation