强激光与粒子束, 2018, 30 (1): 013203, 网络出版: 2018-01-30  

导弹目标单、双基地雷达散射截面对比分析

Comparison analysis of mono-static and bi-static radar cross sections for missile target
作者单位
电子信息系统复杂电磁环境效应国家重点实验室, 河南 洛阳 471003
引用该论文

高磊, 曾勇虎, 汪连栋. 导弹目标单、双基地雷达散射截面对比分析[J]. 强激光与粒子束, 2018, 30(1): 013203.

Gao Lei, Zeng Yonghu, Wang Liandong. Comparison analysis of mono-static and bi-static radar cross sections for missile target[J]. High Power Laser and Particle Beams, 2018, 30(1): 013203.

参考文献

[1] 罗应. 隐身目标与雷达反隐身技术[J]. 舰船电子对抗, 2007, 30(5): 48-53. (Luo Ying. Stealth targets and anti-stealth techniques of radar. Shipboard Electronic Countermeasure, 2007, 30(5): 48-53)

[2] 阮颖铮. 雷达截面与隐身技术[M]. 北京: 国防工业出版社, 1998. (Ruan Yinzheng. Radar cross section and stealth techniques. Beijing: National Defense Industry Press, 1998)

[3] 李修和, 陈永光, 沈阳, 等. 电子战环境下双基地雷达对隐身目标的跟踪技术研究[J]. 电子学报, 2004, 32(6): 918-922. (Li Xiuhe, Chen Yongguang, Shen Yang, et al. Tracking technology of bi-static radar against stealthy targets in EW environment. Acta Electronica Sinica, 2004, 32(6): 918-922 )

[4] 黄沛霖, 姬金祖, 武哲. 飞行器目标的双站散射特性研究[J]. 西安电子科技大学学报, 2008, 35(1): 140-143. (Huang Peilin, Ji Jinzu, Wu Zhe. Research on the bi-static RCS characteristic of aircraft. Journal of Xidian University, 2008, 35(1): 140-143)

[5] 张小宽, 刘尚钞, 张晨新, 等. 隐身目标的双基地雷达探测技术[J]. 系统工程与电子技术, 2008, 30(3): 444-446. (Zhang Xiaokuan, Liu Shangchao, Zhang Chenxin, et al. Study on the detection technology of bi-static radars for stealthy targets. Systems Engineering and Electronics, 2008, 30(3): 444-446)

[6] 吴小坡, 时家明, 莫正攀, 贾宁. 双基地雷达对隐身目标探测区域的计算[J]. 现代防御技术, 2012, 40(4): 123-127. (Wu Xiaopo, Shi Jiaming, Mo Zhengpan, et al. Calculation of detection coverage of bi-static radar against stealth target. Modern Defence Technology, 2012, 40(4): 123-127)

[7] 赵小华, 渠亮. 雷达反隐身技术的浅析[J]. 现代雷达, 2007, 29(3): 17-19. (Zhao Xiaohua, Qu Liang. Analysis of radar countermeasures against stealth technology. Modern Radar, 2007, 29(3): 17-19)

[8] 许学春. 隐身导弹与隐身技术的应用[J]. 飞航导弹, 2013(5): 87-90. (Xu Xuechun. Stealth missile and application of stealth technology. Winged Missiles Journal, 2013(5): 87-90)

[9] 梁桂华. 战略层面的对决—俄罗斯Kh-555巡航导弹vs美国AGM129[J]. 现代兵器, 2005(11): 12-15. (Liang Guihua. Battle in strategical level: cruise missile Kh-555 from Russia vs AGM129 from America. Modern Weaponry, 2005(11): 12-15)

[10] 文志信, 单洁, 潘峰. 美国新一代先进反辐射导弹[J]. 飞航导弹. 2011(2): 55-58. (Wen Zhixin, Shan Jie, Pan Feng. The new generation advanced anti-radiation missile of America. Winged Missiles Journal, 2011(2): 55-58)

[11] 王辉军. 双基地前向散射雷达目标跟踪研究[D]. 西安: 西安电子科技大学, 2009. (Wang Huijun. The disquisition of targets tracking in the bistatic forward scattering radar. Xi’an: Xidian University, 2009)

[12] 陈新亮, 胡程, 曾涛. 一种基于前向散射雷达的车辆目标自动识别方法[J]. 中国科学: 信息科学, 2012, 42: 1471-1480. (Chen Xinliang, Hu Cheng, Zeng Tao. Automatic vehicle classification based on forward scattering radar. Science of China: Information Science, 2012, 42: 1471-1480)

[13] Suberviola I, Mayordomo I, Mendizabal J. Experimental results of air target detection with a GPS forward-scattering radar[J]. IEEE Geosci Remote Sens Lett, 2012, 9(1): 47-51.

高磊, 曾勇虎, 汪连栋. 导弹目标单、双基地雷达散射截面对比分析[J]. 强激光与粒子束, 2018, 30(1): 013203. Gao Lei, Zeng Yonghu, Wang Liandong. Comparison analysis of mono-static and bi-static radar cross sections for missile target[J]. High Power Laser and Particle Beams, 2018, 30(1): 013203.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!