期刊文献+

基于复合频率编码的低截获概率波形簇设计 被引量:3

Waveform cluster design of low probability of intercept based on compound frequency coding
下载PDF
导出
摘要 针对宽带正交低截获概率(low probability of intercept,LPI)雷达波形簇设计,利用频率编码捷变和调频斜率捷变的复合波形编码技术,在波形正交约束的基础上构造了一种复合频率编码的非线性代价目标函数,提出了基于频率编码捷变或调频斜率捷变的复合波形簇优化设计方法。利用模式搜索算法获得了具有良好自相关和互相关旁瓣特性的宽带正交LPI波形簇。仿真结果表明,所设计的波形能够获得低自相关旁瓣和低互相关旁瓣,可为LPI雷达发射波形与多输入多输出雷达波形的设计提供参考。 As for the waveform cluster design of wideband orthogonal low probability of intercept(LPI)radar,utilizing the composite waveform coding technology of frequency coding agility and frequency modulation slope agility,a nonlinear cost objective function of compound frequency coding is constructed based on waveform orthogonal constraint.Moreover,the optimization design method of composite waveform cluster combining frequency coding agility and frequency modulation slope agility is proposed.A wideband orthogonal LPI waveform cluster with optimal autocorrelation and cross-correlation sidelobe is obtained by using pattern search algorithm.Simulation results show that the designed waveform can obtain low autocorrelation sidelobe and low cross-correlation sidelobe,which can provide reference for the design of LPI radar transmitting waveform and multiple input multiple output radar waveform.
作者 郝志梅 孙进平 罗美方 HAO Zhimei;SUN Jinping;LUO Meifang(School of Electronics and Information Engineering, Beihang University, Beijing 100191, China;Leihua Electronic Technology Research Institute, Aviation Industry Corporation of China, LTD., Wuxi 214063, China)
出处 《系统工程与电子技术》 EI CSCD 北大核心 2021年第11期3137-3143,共7页 Systems Engineering and Electronics
基金 航空科学基金(2014ZC07002)资助课题。
关键词 低截获概率雷达 正交波形 低自相关旁瓣 低互相关旁瓣 low probability of intercept(LPI)radar orthogonal waveform low autocorrelation sidelobe low cross-correlation sidelobe
  • 相关文献

参考文献4

二级参考文献24

  • 1李伟,梁甸农,董臻.一种捷变调频斜率极性和限幅相结合的SAR抗干扰方法[J].遥感学报,2007,11(2):171-176. 被引量:10
  • 2Cumming I G , Wong F H. Digital processing of syntheticaperture radar data : algorithms and implementation [M].Boston, USA : Artech House, 2005.
  • 3Zhou J X , Shi Z G , Cheng X , et al. Automatic targetrecognition of SAR images based on global scattering centermodel [J]. IEEE Transaction on Geoscience and RemoteSensing, 2011, 4 9 (1 0 ) : 3713 -3729.
  • 4Gao G, Shi G T. The CFAR detection of ground movingtargets based on a joint metric of SAR interferogram’smagnitude and phase [J]. IEEE Transaction on Geoscienceand Remote Sensing, 2012, 5 0 (9 ) : 3618 -3624.
  • 5Goj W. Synthetic aperture radar and electronic warfare [M].Norwood, USA:Artech House, 1992.
  • 6Dumper K , Cooper P S , Wonsl A F , et al. Spacebomesynthetic aperture radar and noise jamming [C]//Proceedingsof IET International Conference on Radar Systems,Edinburgh, 1997: 411 -4 1 4 .
  • 7Liu Q F, Xing S X, Wang X S, et al. A strip-map SARcoherent jammer structure utilizing periodic modulationtechnology [J]. Progress in Electromagnetics Research B ,PIER-B, 2011, 2 8 : 111 -1 2 8 .
  • 8Zhou F , Zhao B , Tao M L , et al. A large scene deceptivejamming method for space-bome SAR [J]. IEEE Transaction onGeoscience and Remote Sensing, 2013, 51(8) : 4486 - 4489.
  • 9Soumekh M. SAR-ECCM using phase-perturbed LFM chirpsignals and DRFM repeat jammer penalization [J]. IEEETransaction on Aerospace and electronic systems, 2006,4 2 (1 ) : 191 -2 0 5 .
  • 10Li W, Lu X Q , Da X Y , et al. Anti-jamming method basedon orthogonal codes jittered and random initial phase forS A R [C]// Proceedings of IET International Conference onRadar Systems, Edinburgh, 2007: 175 -1 7 9 .

共引文献9

同被引文献49

引证文献3

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部