Optics and Precision Engineering, Volume. 31, Issue 13, 1922(2023)

Cascade dynamic hybrid amplitude limitation frame division step control of airborne optical electronic load

Jinbao FU1,2、*, Hongwen ZHANG1,2, Houtian HUANG1,2, and Lei ZHANG1,2
Author Affiliations
  • 1Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun30033, China
  • 2Key Laboratory of Airborne Optical Imaging and Measurement, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun130033, China
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    References(13)

    [1] [1] 1田大鹏, 邵晓鹏. 航空光学成像与测量技术新进展[J]. 光学 精密工程, 2020, 28(6):1221-1225. doi: 10.3788/ope.20202806.1221TIAND P, SHAOX P. New emerging technologies in airborne optical imaging and measurement[J]. Opt. Precision Eng., 2020, 28(6):1221-1225. (in Chinese). doi: 10.3788/ope.20202806.1221

    [2] [2] 2王惠林, 宁飞, 刘吉龙. 航空光电侦察技术发展研究[J]. 应用光学, 2022, 43(5):825-832. doi: 10.5768/jao202243.0509001WANGH L, NINGF, LIUJ L. Development of aviation electro-optical reconnaissance technology[J]. Journal of Applied Optics, 2022, 43(5):825-832.(in Chinese). doi: 10.5768/jao202243.0509001

    [3] [3] 3张岚, 赵显宇, 熊钟秀. 机载光电侦察装备发展现状分析[J]. 航空科学技术, 2022, 33(7):1-7.ZHANGL, ZHAOX Y, XIONGZH X. Analysis on the development status of airborne EO-reconnaissance equipments[J]. Aeronautical Science and Technology, 2022, 33(7):1-7.(in Chinese)

    [4] [4] 4王正玺, 张葆, 李贤涛, 等. 快速反射镜在像移补偿中的应用[J]. 中国光学, 2020, 13(1):95-105. doi: 10.3788/co.20201301.0095WANGZH X, ZHANGB, LIX T, et al. Application of fast steering mirror in image motion compensation[J]. Chinese Journal of Optics, 2020, 13(1):95-105.(in Chinese). doi: 10.3788/co.20201301.0095

    [5] [5] 5王福超, 王昱棠, 田大鹏. 音圈快速反射镜的完全跟踪控制[J]. 光学 精密工程, 2020, 28(9): 1997-2006. doi: 10.37188/OPE.20202809.1997WANGF CH, WANGY T, TIAND P. Perfect tracking control for fast-steering mirror driven by voice coil motor[J]. Opt. Precision Eng., 2020, 28(9): 1997-2006.(in Chinese). doi: 10.37188/OPE.20202809.1997

    [6] [6] 6谭淞年, 王福超, 许永森, 等. 航空光电平台两轴快速反射镜结构设计[J]. 光学 精密工程, 2022, 30(11):1344-1352. doi: 10.37188/OPE.20213000.0757TANS N, WANGF CH, XUY S, et al. Structure design of two-axis fast steering mirror for aviation optoelectronic platform[J]. Opt. Precision Eng., 2022, 30(11):1344-1352.(in Chinese). doi: 10.37188/OPE.20213000.0757

    [7] [7] 7吴雄雄, 栾亚东, 王惠林, 等. 航空光电成像系统像移补偿技术研究[J]. 应用光学, 2022, 43(3):424-429. doi: 10.5768/jao202243.0302001WUX X, LUANY D, WANGH L, et al. Image motion compensation technology of aerial photoelectric imaging system[J]. Journal of Applied Optics, 2022, 43(3):424-429. (in Chinese). doi: 10.5768/jao202243.0302001

    [8] TARBOURIECH S, TURNER M. Anti-windup design: an overview of some recent advances and open problems[J]. IET Control Theory & Applications, 3, 1-19(2009).

    [9] HIPPE P[M]. Windup in Control: its Effects and Their Prevention(2006).

    [10] [10] 10付金宝, 丁亚林, 李清军, 等. Anti-Windup变结构自适应PID控制在航空相机位角控制系统的应用[J]. 光学 精密工程, 2014, 22(3): 626-632. doi: 10.3788/OPE.20142203.0626FUJ B, DINGY L, LIQ J, et al. Application of Anti-Windup variable structure adaptive PID control to position angle control system of aerial camera[J]. Opt. Precision Eng., 2014, 22(3): 626-632. (in Chinese). doi: 10.3788/OPE.20142203.0626

    [11] [11] 11董锡君, 姚郁, 王子才. 基于滤波器的Anti-Windup设计及其在伺服系统中的应用[J]. 哈尔滨工业大学学报, 2002, 34(1):101-104. doi: 10.3321/j.issn:0367-6234.2002.01.025DONGX J, YAOY, WANGZ C. Anti-Windup design based on filter and its application to servo system[J]. Journal of Harbin Institute of Technology, 2002, 34(1):101-104.(in Chinese). doi: 10.3321/j.issn:0367-6234.2002.01.025

    [12] ZHANG G H, QIA􀆞 F, SHAO H. Anti-windup Scheme for the controller of integrating processes with dead-time[J]. Journal of Donghua University (English Edition), 23, 79-83(2006).

    [13] CAMPO P J, MORAR I M. Robust control of processes subject to saturation nonlinearities[J]. Computers & Chemical Engineering, 14, 343-358(1990).

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    Jinbao FU, Hongwen ZHANG, Houtian HUANG, Lei ZHANG. Cascade dynamic hybrid amplitude limitation frame division step control of airborne optical electronic load[J]. Optics and Precision Engineering, 2023, 31(13): 1922

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    Paper Information

    Category: Micro/Nano Technology and Fine Mechanics

    Received: Dec. 1, 2022

    Accepted: --

    Published Online: Jul. 26, 2023

    The Author Email: Jinbao FU (fujinbao@ciomp.ac.cn)

    DOI:10.37188/OPE.20233113.1922

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