

浏览全部资源
扫码关注微信
国防科技大学电子科学学院电子信息系统复杂电磁环境效应国家重点实验室,湖南长沙 410073
Received:10 October 2022,
Revised:2022-12-07,
Published:25 December 2022
移动端阅览
王罗胜斌,吴国庆,徐振海等.雷达极化域变焦角反组合体对抗方法:抗质心式干扰[J].电子学报,2022,50(12):2957-2968.
WANG Luo-sheng-bin,WU Guo-qing,XU Zhen-hai,et al.Radar Polarization Modulation Countermeasures for Combined Corner Reflector: Anti Centroid Jamming[J].ACTA ELECTRONICA SINICA,2022,50(12):2957-2968.
王罗胜斌,吴国庆,徐振海等.雷达极化域变焦角反组合体对抗方法:抗质心式干扰[J].电子学报,2022,50(12):2957-2968. DOI: 10.12263/DZXB.20221139.
WANG Luo-sheng-bin,WU Guo-qing,XU Zhen-hai,et al.Radar Polarization Modulation Countermeasures for Combined Corner Reflector: Anti Centroid Jamming[J].ACTA ELECTRONICA SINICA,2022,50(12):2957-2968. DOI: 10.12263/DZXB.20221139.
弹载雷达是实现精确制导的重要传感器,在末制导阶段通常采用单脉冲模式以实现对目标的精确跟踪.角反射器质心干扰是应对弹载雷达跟踪的一种重要的无源干扰方式.在雷达跟踪阶段,舰船释放的角反射器与舰船位于雷达的同一分辨单元,单脉冲测量角度指向两者质心,由于角反射器的雷达回波一般强于舰船,单脉冲测角被诱偏,末制导雷达的跟踪点往往偏向角反射器.随着舰船的快速机动,二者之间的距离逐渐变大,末制导雷达会出现目标“失跟”,使得舰船得以逃脱.对抗质心式干扰本质上是解决未分辨多目标的估计问题,通常分为两步,一是检测到目标后判断是否为“目标+干扰”的混合体,二是从混叠的回波信号中准确测量目标参数.在质心干扰存在性检测方面,主要有波形类方法和统计类方法.前者通过分析目标回波的特征差异检测干扰,例如信号盒形分析、小波变换等,此类方法存在经验判决实际性能有限;后者将“混合体”视作多目标,建立单脉冲比统计模型,通过似然比检测实现干扰存在性判决,此类方法模型推导复杂,且仅适用于单个干扰情况.在目标参数测量方面,干扰抑制类方法利用目标和干扰的极化散射特性差异,通过极化滤波抑制干扰,提升单脉冲测角精度,然而需要干扰极化特性或干扰与目标幅度比等先验信息;而多目标测量方法以单脉冲统计模型为基础,构造统计量实现多目标的角度估计,例如矩估计、极大似然估计等.此类方法存在仅适用于单个干扰、依赖正确的统计模型等不足,并且需要大量脉冲精确估计统计模型参数,在实际应用中受限.舰船目标包含了丰富的散射机理,而角反组的散射机理相对单一,两者极化信息差异明显,可用于提升角反干扰的检测与抑制.然而,现有极化单脉冲测角方法均采用多通道方法处理极化信息,目标间的散射特性差异利用不够充分,实际应用时效能有限.在研究雷达极化过程中,特定极化下相邻目标的合成回波差异很大.通过极化域变焦处理调控雷达收发极化抑制角反回波,可以实现舰船目标角度的准确测量.本文针对角反组合体质心干扰,立足于极化域变焦超分辨理论,分析了极化阵列雷达的特征波束和单脉冲测角的统计分布,阐述了“舰船+角反”混合体检测以及角反干扰抑制原理;在此基础上,结合角反与舰船的极化散射特性,建立了角反质心干扰信号模型,提出了干扰存在性检测与舰船测角算法,实现了抗角度诱偏.仿真结果表明,本文所提方法测角精度可达0.1倍波束宽度,在
<math id="M1"><mo>-</mo><mn mathvariant="normal">20</mn></math>
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=66367467&type=
2.28600001
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=66367484&type=
4.99533367
dB极化隔离度下仍可有效测量,综合质心干扰对抗成功率可达80%以上.
Missile-borne radar is an important sensor for precise guidance. In the terminal guidance stage
mono-pulse mode is usually used to track the target accurately. Centroid jamming of corner reflector is an important passive jamming method for ships to counter anti-ship missiles. In the radar tracking stage
the corner reflectors released by the ship are in the same resolution unit with ship
and the mono-pulse measurement angle points to their centroid. Since the radar echo of the corner reflector is usually stronger than that of ship
the mono-pulse measurement angle is decoded
and the tracking point of the terminal guidance radar is biased to the corner reflector. With the rapid maneuvering of the ship
the distance between them gradually becomes larger
which will cause the “loss track” of ship. The anti-centroid jamming is essentially an estimation problem of unresolved multiple targets
which is usually divided into two steps: one is to determine whether the target is a mixture of target and corner reflector after detection; the other is to accurately measure the target parameters from the coupling echo signal. In the aspect of the existence detection of centroid jamming
there are mainly waveform method and statistic method. The former detects jamming by analyzing the characteristic difference of target echo
such as signal box shape analysis
wavelet transform
etc. T
he empirical judgment of this method is limited in practical performance. The latter regards the mixture as multiple targets
establishes the statistical model of mono-pulse ratio
and realizes the jamming existence judgment through the likelihood ratio detection. However
the models are complicated to deduce
and only apply to the case of single jamming. As for the target parameter measurement
jamming suppression methods which suppress the jamming through polarization filtering improve the mono-pulse measurement accuracy. However
prior information such as the jamming polarization characteristics or the amplitude ratio between the jamming and the target is required. Based on the mono-pulse statistical model
statistics are constructed to achieve multi targets angle estimation
such as moment estimation
maximum likelihood estimation
etc. This method is limited in practical application because it only applies to a single jamming and depends on a correct statistical model
also requires a large number of pulses to accurately estimate the parameters of the statistical model. The ship target contains abundant scattering mechanism
but the scattering mechanism of the corner reflector array is relatively single
and the polarization information of the two groups is different
which can be used to detect and suppress the corner reflector jamming. However
the existing polarization mono-pulse angle measurement methods adopt the multi-channel method to process the polarization information
and the scattering characteristic difference between the targets is not fully utilized
so the efficiency is limited in practical application. In the study of radar polarization
the synthetic echoes of adjacent targets under specific polarization states are very different. The accurate angle measurement of ship target can be achieved by adjusting the polarization states to suppress the corner reflector through the polarization modulation processing. Based on the theory of polarization modulation super-resolution
this paper analyzes
the statistical distribution of characteristic beam and mono-pulse angle estimation for polarization array radar under the condition of centroid jamming of corner reflectors. Moreover
the principle of “ship-reflector” mixture detection and centroid jamming suppression is explained. On this basis
combined with the polarization scattering characteristic of corner reflector and ship
the corner reflector centroid jamming signal model is built. Then
the algorithm of jamming presence detection and angle estimation for ships is proposed and anti-angle induced deflection is realized. The simulation results show that the angle estimation accuracy of the proposed angle estimation method can achieve 0.1 times beamwidth
in addition
is valid with
<math id="M2"><mo>-</mo><mn mathvariant="normal">20</mn></math>
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=66367486&type=
2.28600001
https://html.publish.founderss.cn/rc-pub/api/common/picture?pictureId=66367488&type=
4.99533367
dB polarization isolation. The rate of successful anti-centroid jamming is more than 80%.
张志远 , 张介秋 , 屈绍波 , 等 . 雷达角反射器的研究进展及展望 [J ] . 飞航导弹 , 2014 ( 4 ): 64 - 70 .
ZHANG Z Y , ZHANG J Q , QU S B , et al . Research progress and prospect of radar corner reflector [J ] . Aerodynamic Missile Journal , 2014 ( 4 ): 64 - 70 . (in Chinese)
张志远 , 赵原源 . 新型二十面体三角形角反射器的电磁散射特性分析 [J ] . 指挥控制与仿真 , 2018 , 40 ( 4 ): 133 - 137 .
ZHANG Z Y , ZHAO Y Y . Analysis of electromagnetic scattering characteristic for new type icosahedrons triangular trihedral corner reflectors [J ] . Command Control & Simulation , 2018 , 40 ( 4 ): 133 - 137 . (in Chinese)
陈静 . 雷达无源干扰原理 [M ] . 北京 : 国防工业出版社 , 2009 .
CHEN J . Principles of Radar Passive Jamming [M ] . Beijing : National Defense Industry Press , 2009 . (in Chinese)
蔡天一 , 赵峰民 , 曾维贵 . 基于分形维数的质心干扰对抗方法 [J ] . 弹箭与制导学报 , 2013 , 33 ( 2 ): 173 - 176 .
CAI T Y , ZHAO F M , ZENG W G . Anti-jamming method for centroid based on fractal dimension [J ] . Journal of Projectiles, Rockets, Missiles and Guidance , 2013 , 33 ( 2 ): 173 - 176 . (in Chinese)
李伟 , 贾惠波 , 顾启泰 . 抗箔条质心干扰的一种方法 [J ] . 舰船电子对抗 , 2000 , 23 ( 5 ): 11 - 13 .
LI W , JIA H B , GU Q T . A method to resist chaff centroid interference [J ] . Shipboard Electronic Warfare , 2000 , 23 ( 5 ): 11 - 13 . (in Chinese)
汤广富 , 陈远征 , 赵宏钟 , 等 . 一种改进的小波变换抗箔条干扰算法 [J ] . 雷达与对抗 , 2005 , 25 ( 2 ): 20 - 24 .
TANG G F , CHEN Y Z , ZHAO H Z , et al . A modified algorithm of anti-chaff jamming with wavelet transform [J ] . Radar & ECM , 2005 , 25 ( 2 ): 20 - 24 . (in Chinese)
来庆福 , 赵晶 , 冯德军 , 等 . 单脉冲雷达导引头质心干扰检测方法 [J ] . 现代雷达 , 2011 , 33 ( 11 ): 40 - 44, 48 .
LAI Q F , ZHAO J , FENG D J , et al . A detection method of centroid jamming in monopulse radar seeker [J ] . Modern Radar , 2011 , 33 ( 11 ): 40 - 44, 48 . (in Chinese)
YANG Y , FENG D J , ZHANG W M , et al . Detection of chaff centroid jamming aided by GPS/INS [J ] . IET Radar , Sonar & Navigation, 2013 , 7 ( 2 ): 130 - 142 .
马佳智 , 施龙飞 , 李永祯 , 等 . 主瓣干扰下混合极化系统单脉冲角度估计方法 [J ] . 系统工程与电子技术 , 2016 , 38 ( 12 ): 2692 - 2699 .
MA J Z , SHI L F , LI Y Z , et al . Angle estimation with hybrid polarimetric radar in main-lobe barrage interference [J ] . Systems Engineering and Electronics , 2016 , 38 ( 12 ): 2692 - 2699 . (in Chinese)
刘业民 , 李永祯 , 黄大通 , 等 . 基于极化单脉冲雷达扩展目标角度估计方法 [J ] . 系统工程与电子技术 , 2021 , 43 ( 6 ): 1497 - 1505 .
LIU Y M , LI Y Z , HUANG D T , et al . Angle estimation method of extended target based on polarization monopulse radar [J ] . Systems Engineering and Electronics , 2021 , 43 ( 6 ): 1497 - 1505 . (in Chinese)
刘业民 , 李永祯 , 邢世其 , 等 . 抗舷外有源诱饵方法研究 [J ] . 电波科学学报 , 2022 , 37 ( 1 ): 48 - 57 .
LIU Y M , LI Y Z , XING S Q , et al . Research on the method of countering off-board active decoy [J ] . Chinese Journal of Radio Science , 2022 , 37 ( 1 ): 48 - 57 . (in Chinese)
赵宜楠 , 金铭 , 乔晓林 . 利用极化单脉冲雷达抗质心干扰的研究 [J ] . 现代雷达 , 2006 , 28 ( 12 ): 45 - 46, 51 .
ZHAO Y N , JIN M , QIAO X L . Study on suppressing centroid interference using polarized monopulse radar [J ] . Modern Radar , 2006 , 28 ( 12 ): 45 - 46, 51 . (in Chinese)
李金梁 , 来庆福 , 李永祯 , 等 . 基于极化对比增强的导引头抗箔条算法 [J ] . 系统工程与电子技术 , 2011 ( 2 ): 268 - 271 .
LI J L , LAI Q F , LI Y Z , et al . Anti-chaff algorithm for seekers based on polarimetric contrast enhancement [J ] . Systems Engineering and Electronics , 2011 ( 2 ): 268 - 271 . (in Chinese)
刘业民 , 邢世其 , 李永祯 , 等 . 基于极化单脉冲雷达的角度估计方法 [J ] . 系统工程与电子技术 , 2018 , 40 ( 8 ): 1713 - 1719 .
LIU Y M , XING S Q , LI Y Z , et al . Method for angle estimating based on polarization monopulse radar [J ] . Systems Engineering and Electronics , 2018 , 40 ( 8 ): 1713 - 1719 . (in Chinese)
王罗胜斌 , 王雪松 , 徐振海 . 雷达极化域调控超分辨的原理与方法 [J/OL ] . 中国科学:信息科学 . ( 2022 )[2022 ] . https://doi.org/10.1360/SSI-2022-0141 https://doi.org/10.1360/SSI-2022-0141 .
孙见彬 . 天线变极化技术抗无源质心干扰研究 [J ] . 电子对抗 , 1992 ( 1 ): 27 - 30 .
SUN J B . Research on anti-passive centroid interference of antenna with variable polarization technology [J ] . Electronic Warfare , 1992 ( 1 ): 27 - 30 . (in Chinese)
TREES H L . 汤俊, 译 . 最优阵列处理技术 [M ] . 北京 : 清华大学出版社 , 2008 .
王雪松 , 王占领 , 庞晨 , 等 . 极化相控阵雷达技术研究综述 [J ] . 雷达科学与技术 , 2021 , 19 ( 4 ): 349 - 370 .
WANG X S , WANG Z L , PANG C , et al . Review on polarimetric phased array radar technologies [J ] . Radar Science and Technology , 2021 , 19 ( 4 ): 349 - 370 . (in Chinese)
SHERMAN M S , BARTUN K D . 周颖, 陈远征, 赵锋, 等译 . 单脉冲测向原理与技术(第2版) [M ] . 北京 : 国防工业出版社 , 2013 .
吴林罡 , 胡生亮 , 张俊 , 等 . 双棱锥型角反射器RCS快速预估方法 [J ] . 战术导弹技术 , 2021 ( 5 ): 29 - 35 .
WU L G , HU S L , ZHANG J , et al . Fast RCS estimation method for bipyramid corner reflector [J ] . Tactical Missile Technology , 2021 ( 5 ): 29 - 35 . (in Chinese)
YANG J , PENG Y N , LIN S M . Similarity between two scattering matrices [J ] . Electronics Letters , 2001 , 37 ( 3 ): 193 .
0
Views
17
下载量
3
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution
京公网安备11010802024621