太赫兹科学与电子信息学报, 2019, 17 (6): 976, 网络出版: 2020-02-24  

机载雷达功率管理的应用

Application of airborne radar power management
作者单位
中国人民解放军 93995部队 74分队, 陕西西安 710306
摘要
为适应当前装备更新换代, 更好发挥作战效能, 从雷达应用的角度研究了空战中有源干扰条件下的功率管理措施。以实训数据为基础, 采用数值模拟方法, 分析机载雷达功率管理对电子战侦收的影响, 得出雷达“隐身”距离、雷达最大探测距离以及电子战最大侦收距离三者之间呈等比关系。在此基础上对比分析了雷达“隐身”距离与“烧穿”距离之间的关系, 得出本机雷达具备明显信号隐身优势时应尽早采取功率控制措施, 在均势状态下慎用甚至不用功率管理, 以避免雷达同干扰对抗过程中丧失能量优势, 导致抗干扰能力显著降低。研究结果为机载雷达使用提供一定的参考依据。
Abstract
In order to be more adaptable to the upgrading of airborne equipment and enhance the capability of the fighters, the power management of airborne radar under active interference condition in air-to-air combat is researched from the pilots’ point of view. The effect of radar power management on electronic warfare interception is analyzed firstly. According to the numerical simulation results based on flight training data, the mismatch range of target Electronic Support Measure(ESM), the tracking range of the radar and the interception range by the target ESM compose geometric series. Then the relation between the mismatch range and burn through range is discussed. It is concluded that power manage measures should be taken on condition that the radar is superior to the target ESM obviously, otherwise the measures should not be taken in case of radar losing energy advantages over the target interference.
参考文献

[1] 李红卫 ,蔡金元 ,王玉田.机载有源相控阵雷达的作战优势、性能对比及军事应用[J].国防科技, 2015,36(6):69-73.(LI Hongwei,CAI Jinyuan,WANG Yutian. The operational advantage, performance comparison and military application of airborne APAR[J]. National Defense Science & Technology, 2015,36(6):69-73.)

[2] 李健伟,刘璘 ,吴宏超,等. 机载有源相控阵雷达给告警器带来的威胁 [J]. 雷达与对抗 , 2014,34(2):14-18. (LI Jianwei,LIU Lin,WU Hongchao,et al. Threats to radar warning receiver that airborne active phased array radars bring[J]. Radar & ECM, 2014,34(2):14-18.)

[3] 肖鹏,吴宏超,肖卫华,等.功率管理对 LPI雷达低截获性的影响[J].雷达与对抗, 2014,34(4):9-12. (XIAO Peng,WU Hongchao,XIAO Weihua,et al. Effects of power management on low probability of intercept performance of LPI radar[J].Radar & ECM, 2014,34(4):9-12.)

[4] 吴流丽,柳征 ,贺青,等.机载 AESA雷达可探测性分析 [J].航天电子对抗 , 2015,31(5):50-54. (WU Liuli,LIU Zheng,HE Qing,et al. Analysis on the detection capability of the airborne AESA radar[J]. Aerospace Electronic Countermeasures,2015,31(5):50-54.)

[5] 冯博宇,王瑛 ,安航 ,等.机载雷达射频隐身性能风险的计算模型 [J]. 系统工程与电子技术 , 2013,35(1):73-77. (FENG Boyu,WANG Ying,AN Hang,et al. Computational model of radio frequency risk on stealth performance of airborne radar[J].Systems Engineering and Electronics, 2013,35(1):73-77.)

[6] 王谦喆,何召阳 ,宋博文 ,等.射频隐身技术研究综述[J].电子与信息学报, 2018,40(6):1505-1514. (WANG Qianzhe,HE Zhaoyang,SONG Bowen. Overview on RF stealth technology research[J]. Journal of Electronics & Information Technology, 2018,40(6):1505-1514.)

[7] SKOLNIK M I. 雷达手册 [M]. 3版.南京电子技术研究所 ,译. 北京 :电子工业出版社 , 2010. (SKOLNIK M I. Radar handbook[M]. 3rd ed. Translated by Nanjing Research Institute of Electronics Technology. Beijing:Publishing House of Electronics Industry, 2010.)

[8] 司易才,司伟建. 现代电子战导论 [M]. 哈尔滨:哈尔滨工程大学出版社 , 2013:9-10. (SI Yicai,SI Weijian. Introduction to modern EW[M]. Harbin:Harbin Engineering University Press, 2013:9-10.)

[9] 许姣,张贞凯,田雨波.目标跟踪时的雷达分级功率自适应控制 [J]. 江苏科技大学学报(自然科学版) , 2018,32(1):72-76. (XU Jiao,ZHANG Zhenkai,TIAN Yubo. Adaptive control algorithm of radar hierarchical power for target tracking[J].Journal of Jiangsu University of Science and Technology(Natural Science Edition), 2018,32(1):72-76.)

[10] 高智敏,周中良,潘勃,等.跟踪状态下射频隐身功率实时控制方法[J].火力与指挥控制, 2018,43(2):44-48. (GAO Zhimin,ZHOU Zhongliang,PAN Bo,et al. Real time control method for RF stealth power at target tracking[J]. Fire Control & Command Control, 2018,43(2):44-48.)

[11] 朱晓芳,郑坤,王宏,等.有源噪声干扰对脉压的干扰效应分析[J]. 太赫兹科学与电子信息学报, 2017,15(3):417-424. (ZHU Xiaofang,ZHENG Kun,WANG Hong,et al. Analyzing jamming effect on pulse compression of active noise interference[J]. Journal of Terahertz Science and Electronic Information Technology, 2017,15(3):417-424.)

[12] 赵国庆.雷达对抗原理[M].西安:西安电子科技大学出版社, 2012. (ZHAO Guoqing. Principle of radar countermeasure[M]. Xi’an,China:Xidian University Press, 2012.)

[13] 唐永年.雷达对抗工程[M]. 北京:北京航空航天大学出版社, 2012:80. (TANG Yongnian. Radar counter measure engineering[M]. Beijing:Beihang University Press, 2012:80.)

[14] 刘振,隋金坪,魏玺章,等.雷达有源干扰识别技术研究现状与发展趋势[J]. 信号处理, 2017,33(12):1593-1601. (LIU Zhen,SUI Jinping,WEI Xizhang,et al. The development and prospect of radar active jamming recognition[J]. Journal of Signal Processing, 2017,33(12):1593-1601.)

[15] 曹兰英,罗美芳,吴建.基于信息论的脉冲压缩雷达 DRFM干扰检测技术[J].太赫兹科学与电子信息学报, 2018,16(3): 431-435. (CAO Lanying,LUO Meifang,WU Jian. Detection of DRFM jamming for pulse compression radar based on information theory[J]. Journal of Terahertz Science and Electronic Information Technology, 2018,16(3):431-435.)

吴继礼, 刘平, 孟卫刚, 胥杰. 机载雷达功率管理的应用[J]. 太赫兹科学与电子信息学报, 2019, 17(6): 976. WU Jili, LIU Ping, MENG Weigang, XU Jie. Application of airborne radar power management[J]. Journal of terahertz science and electronic information technology, 2019, 17(6): 976.

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