• Acta Photonica Sinica
  • Vol. 45, Issue 4, 406001 (2016)
CAO Yang1、2、* and LIU Shi-tao1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20164504.0406001 Cite this Article
    CAO Yang, LIU Shi-tao. Optical Axis ADRC Stabilization of Free Space Optical Communication Based on Space Mobile Platform[J]. Acta Photonica Sinica, 2016, 45(4): 406001 Copy Citation Text show less
    References

    [1] RRUEGO I, GUERRERO H, S RODRIGUEZ, et al. OWLS: a ten-year history in optical wireless links for intra-satellite communications[J]. Selected Areas in Communications, 2009, 27(9): 1599-1611.

    [2] TOYOSHIMA M, TAKENAKA H,SHOJI Y, et al. Results of Kirari optical communication demonstration experiments with NICT optical ground station (KODEN) aiming for future classical and quantum communications [J]. Acta Astronautica, 2012, 74(3): 40-49.

    [3] BHATNAGA M, ARTI M. Performance analysis of hybrid satellite-terrestrial FSO cooperative system[J]. Photonics Technology Letters,2013, 25(22): 2197-2200.

    [4] NARESH K, RANA D. Enhanced performance analysis of inter-aircraft optical-wireless communication (IAOWC) system [J]. Optic, 2014, 125(1): 486-488.

    [5] LUNA R, BORAH D K, JONNALAGADDA R, et al. Experimental demonstration of a hybrid link for mitigating atmospheric turbulence effects in free-space optical communication [J]. Photonics Technology Letters, 2009, 21(17): 1196-1198.

    [6] GRACE D, CAPSTICK M H, MOHORCIC M, et al. Integrating users into the wider broadband network via high altitude platforms[J]. Wireless Communications, 2005, 12(5): 98-105.

    [7] KARAPANTAZIS S,PAVLIDOU F. Broadband communication via high-altitude platforms: a survey[J]. Communications Surveys & Tutorials, 2005, 7(1): 2-31

    [8] CAO Yang, RONG Jian, ZHANG Hong-min, et al. Fuzzy variable structure multiple-model tracking for airborne laser communication system[J]. Acta Photonica Sinica, 2014, 43(8): 94-99.

    [9] LIU Peng, WANG Xiao-man, HAN Cheng, et al. Simulation of acquisition subsystem in space-ground optical communication system [J]. Acta Photonica Sinica, 2014, 43(2): 98-103.

    [10] LIU Yun-qing, JIANG Hui-lin, TONG Shou-feng, et al. Stabilization tracking technology for atmospheric laser communication system [J]. Acta Photonica Sinica, 2011, 40(7): 972-977.

    [11] SONG Yan-song, TONG Shou-feng, JIANG Hui-lin, et al. Variable structure control technology of the fine tracking assembly in airborne laser communication system[J]. Infrared & Laser Engineering, 2010, 39(5): 934-938.

    [12] ZUO Tao, AI Yong, HUANG Hai-bo, et al. Multiple control method of ATP system for space optical communication[J]. Infrared & Laser Engineering, 2011, 40(1): 107-111.

    [13] QIU Bao-mei,WAN Ji-quan,WANG Jian-wen. Active disturbance rejection controller of the aerial photography stabilized platform[J]. Opto-Electronic Engineering, 2012, 39(4): 21-26.

    [14] LI Q, XUE K, LI X. Design and dynamic coupling analysis of three aixmotion simulator[J]. Journal of Machine Design, 2012,29(5): 15-20.

    [15] LEONARD F, MARTINI A, ABBA G. Robust nonlinear controls of model-scale helicopters under lateral and vertical wind gusts [J]. Control Systems Technology, 2012, 20(1): 154-163.

    [16] LAI Ai-fang, GUO Yu, ZHENG Li-jun. Active disturbance rejection control for spacecraft attitude maneuver and stability[J]. Control Theory & Applications, 2012, 29(3): 401-406.

    [17] WU Lei, BAO Hong, DU Jing-Li, et al. Learning algorithm for parameters of automatic disturbances rejection controller [J]. Acta Automatica Sinica, 2014, 40(3): 556-560.

    CAO Yang, LIU Shi-tao. Optical Axis ADRC Stabilization of Free Space Optical Communication Based on Space Mobile Platform[J]. Acta Photonica Sinica, 2016, 45(4): 406001
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