应用光学, 2019, 40 (2): 217, 网络出版: 2019-03-26   

激光诱偏干扰技术在车载主动防护系统中的应用

Application of laser induced bias interference technology in vehicle active protection system
作者单位
1 西安应用光学研究所, 陕西 西安 710065
2 中国兵器科学研究院, 北京 100089
摘要
为了有效对抗激光制导**, 提升车载**系统在战场上的生存能力, 提出一种车载主动防护系统的激光诱偏干扰对抗技术。根据半主动制导**系统的来袭威胁信息和特性, 探讨了激光诱偏干扰技术实现的可行性; 采用同步转发式干扰模式, 通过实验装置记录了跟踪系统从跟踪识别目标到启动干扰系统的运动轨迹, 验证了该系统能够在7s有效反应时间内实施对抗干扰, 达到主动防护的目的。
Abstract
In order to effectively combat the laser guided weapons and improve the survivability of vehicle-mounted weapon systems on the battlefield, we proposed a laser induced bias interference countermeasures technology for vehicle-mounted active defense systems. According to the incoming threat information and characteristics of semi-active guided weapon systems, we discussed the feasibility of laser induced interference technique .Moreover we recorded the trajectory of the tracking system from tracking and identifying the target to starting the interference system by experimental device with synchronous forward interference mode. It is verified that the system can implement interference antagonism within 7 s and reach active protection ability.
参考文献

[1] 周莲, 杨阳.基于战场威胁分析的车载干扰型主动防护技术研究[J].电子信息对抗技术, 2017, 32(1): 42-49.

    ZHOU Lian,YANG Yang. Research on vehicle-mounted interference active protection technology based on battlefield threat analysis[J]. Electronic Information Warfare Technology, 2017, 32(1): 42-49.

[2] 周平, 赵辰霄, 梅林,等.现代坦克主动防护系统发展现状与趋势分析[J].指挥控制与仿真, 2016, 38(2): 132-136.

    ZHOU Ping, ZHAO Chenxiao, MEI Lin, et al. Analysis on the development status and trend of modern active tank protection system[J]. Command Control & Simulation, 2016, 38(2): 132-136.

[3] 张英远. 激光对抗中的告警和欺骗干扰技术[D]. 西安: 西安电子科技大学, 2013.

    ZHANG Yingyuan. Warning and spoofing techniques in laser countermeasures[D]. Xi′an: Xi′an University of Electronic Science and Technology, 2013.

[4] 马世伟. 激光跟踪与欺骗干扰演示系统研究[D]. 哈尔滨: 哈尔滨工业大学, 2014.

    MA Shiwei. Study on laser tracking and spoofing demonstration system[D]. Harbin: Harbin Institute of Technology, 2014.

[5] 张小宝, 仝力鹏.激光制导武器欺骗干扰技术研究[J]. 航天电子对抗, 2013, 29(2): 7-8.

    ZHANG Xiaobao, TONG Lipeng. Research on laser guided weapon spoofing technology[J]. Aerospace Electronic Warfare, 2013, 29(2): 7-8.

[6] 白峰, 魏文俭, 满广志,等. 激光有源欺骗式干扰技术现状与发展[J]. 国防科技, 2009, 30(6): 5-8.

    BAI Feng, WEI Wenjian, MAN Guangzhi, et al. Current status and development of active laser spoofing technology [J]. Defence-related Science and Technology, 2009, 30(6): 5-8.

[7] 李海燕. 激光制导武器有源干扰对抗措施分析[J]. 激光杂志, 2010, 31(6): 57-58.

    LI Haiyan. Analysis of countermeasures against active jamming of laser guided weapons[J].Laser Magazine, 2010, 31(6): 57-58.

[8] 孙晓林. 基于四象限探测器的高精度定位算法研究[D].大连: 大连海事大学, 2012.

    SUN Xiaolin. High precision localization algorithm based on four-quadrant detector[D]. Dalian: Dalian Maritime University, 2012.

[9] JURBA M, POPESCU E, COJOCARU S, et al. Extended spectral range laser receiver[J]. Optoelectronics and Advanced Materials-Rapid Communications,2012(6): 11-12.

[10] 李云霞, 蒙文, 马丽华. 光电对抗原理与应用[M]. 西安: 西安电子科技大学出版社, 2009: 135-146.

    LI Yunxia, MENG Wen, MA Lihua. Principle and application of photoelectric countermeasure[M]. Xi′an: Xi′an University of Electronic Science and Technology Press, 2009: 135-146.

[11] MANASSON V A, SADOVENIK L S. Laser warning receiver based on coherence discrimination[C]. USA: IEEE, 1996: 869-873.

[12] ZHANG Jilong, WANG Zhibin. A review of laser warning receiver based on spectral discrimination and coherent detection[J]. Journal of Test and Measurement Technology, 2006, 20: 95-101.

[13] 宋海平, 张珂, 刘勇,等. 装甲车辆主动防护系统综合反应时间分析[J]. 电子信息对抗技术, 2014, 29(2): 36-38.

    SONG Haiping, ZHANG Ke, LIU Yong, et al. Comprehensive response time analysis of active protection system of armored vehicle[J]. Electronic Information Warfare Technology, 2014, 29(2): 36-38.

[14] 王秋贵, 王大伟, 崔宇,等. 基于光电技术在车辆主动防护系统中的应用研究[J]. 科海故事博览·科技探索, 2013(12): 7-11.

    WANG Qiugui,WANG Dawei,CUI Yu, et al. Research on application of photoelectric technology in vehicle active protection system[J]. Scientific and Technological Exploration in Scientific Stories Expo, 2013(12): 7-11.

[15] 李石川, 张同来, 李黎华,等. 地面机动目标的红外诱饵欺骗技术研究[J].红外技术, 2013,35(11): 727-731.

    LI Shichuan, ZHANG Tonglai, LI Lihua, et al. Study on infrared decoy spoofing technology of ground maneuvering target[J]. Infrared Technology, 2013,35(11): 727-731.

高玮, 茹志兵, 雷海丽, 汤磊, 郭玉玉. 激光诱偏干扰技术在车载主动防护系统中的应用[J]. 应用光学, 2019, 40(2): 217. GAO Wei, RU Zhibing, LEI Haili, TANG Lei, GUO Yuyu. Application of laser induced bias interference technology in vehicle active protection system[J]. Journal of Applied Optics, 2019, 40(2): 217.

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