西安电子科技大学雷达信号处理国家重点实验室,陕西西安 710071
[ "阚庆云 女,1997年11月出生于安徽省宿州市.现为西安电子科技大学博士研究生.主要研究方向为空时自适应处理,动目标检测.E-mail: kqy@stu.xidian.edu.cn" ]
[ "许京伟(通讯作者) 男,1987年5月出生于山东省日照市.现为西安电子科技大学副教授,博士生导师.主要研究方向为波形分集技术、雷达系统建模、阵列信号处理等." ]
[ "廖桂生 男,1963年6月出生于广西壮族自治区桂林市.现为西安电子科技大学教授,博士生导师.主要研究方向为雷达系统技术、阵列信号处理、动目标检测等.E-mail: liaogs@xidian.edu.cn" ]
收稿:2021-10-27,
修回:2022-06-08,
纸质出版:2023-01-25
移动端阅览
阚庆云,许京伟,廖桂生.和差天线空时自适应测角方法及性能分析[J].电子学报,2023,51(01):42-49.
KAN Qing-yun,XU Jing-wei,LIAO Gui-sheng.Angle Estimation Approach and Performance Analysis for STAP with Sum-Difference Antenna[J].ACTA ELECTRONICA SINICA,2023,51(01):42-49.
阚庆云,许京伟,廖桂生.和差天线空时自适应测角方法及性能分析[J].电子学报,2023,51(01):42-49. DOI: 10.12263/DZXB.20211458.
KAN Qing-yun,XU Jing-wei,LIAO Gui-sheng.Angle Estimation Approach and Performance Analysis for STAP with Sum-Difference Antenna[J].ACTA ELECTRONICA SINICA,2023,51(01):42-49. DOI: 10.12263/DZXB.20211458.
雷达模拟和差天线技术通过射频功率合成器形成和差波束,在目标角度测量中应用广泛,然而运动平台雷达经过空时自适应处理(Space-Time Adaptive Processing,STAP)后难以还原鉴角曲线,即自适应处理后的等效鉴角曲线与静态鉴角曲线发生偏离.针对此问题,本文提出和差天线体制雷达空时自适应测角方法.该方法通过和差STAP算法抑制杂波后实现角度估计,并且通过理论推导建立了角度估计与和通道输出信噪比、差通道剩余杂噪比之间的关系,重点分析了杂波剩余对角度估计的非一致性影响.仿真实验验证了本文方法的有效性.
Analog sum-difference antenna radar forms sum-difference beam through radio frequency power synthesizer
which is widely used in target angle estimation. However
after space-time adaptive processing (STAP)
it is difficult for moving platform radar to restore the angle identification curve
that is
the equivalent angle identification curve after adaptive processing deviates from the static angle identification curve. To solve this problem
this paper proposes a space-time adaptive angle estimation method for STAP with sum-difference antenna system. In this method
the angle estimation is realized after suppressing clutter by sum-difference STAP algorithm. The relationship between angle estimation and the output signal-to-noise ratio of the sum channel
residual clutter-to-noise ratio of the difference channel is established by theoretical deduction. This paper analyzes the influence of clutter residue on the inconsistency of angle estimation emphatically. Simulation results verify the effectiveness of the proposed method.
王永良 , 彭应宁 . 空时自适应信号处理 [M]. 北京 : 清华大学出版社 , 2000 .
WANG Y L , PENG Y N . Space-Time Adaptive Processing [M]. Beijing : Tsinghua University Press , 2000 . (in Chinese)
GUERCI J R . Space-Time Adaptive Processing for Radar [M]. Boston : Artech House , 2003 .
KLEMM R . Principles of Space-Time Adaptive Processing [M]. 3rd ed . London : Institution of Electrical Engineers , 2006 .
SKOLNIK M I . Introduction to Radar Systems [M]. 3rd ed . New York : McGraw Hill Higher Education , 2002 .
NICKEL U . Monopulse estimation with adaptive arrays [J]. IEE Proceedings F(Radar and Signal Processing) , 1993 , 140 ( 5 ): 303 - 308 .
WARD J . Space-time adaptive processing for airborne radar [C]// IEE Colloquium on Space-Time Adaptive Processing . London : IEE , 1998 : 2(1-6 .
WANG H , ZHANG Y , ZHANG Q , et al . An improved and affordable space-time adaptive processing approach [C]// Proceedings of International Radar Conference . Beijing : IEEE , 1996 : 72 - 77 .
BROWN R D , WICKS M C , ZHANG Y , et al . A space-time adaptive processing approach for improved performance and affordability [C]// Proceedings of the 1996 IEEE National Radar Conference . Ann Arbor : IEEE , 1996 : 321 - 326 .
WANG H , ZHANG Y , ZHANG Q . Lessons learned from recent STAP experiments [C]// Proceedings of International Radar Conference . Beijing : IEEE , 1996 : 761 - 765 .
WANG H . An overview of space-time adaptive processing for airborne radars [C]// Proceedings of International Radar Conference . Beijing : IEEE , 1996 : 789 - 794 .
ZHANG Y H , HONG W . Further study on space-time adaptive processing with sum and difference beams [C]// IEEE Antennas and Propagation Society International Symposium 1997 . Montreal : IEEE , 1997 : 2422 - 2425 .
ZHANG Y , WANG H . Further results of ΣΔ-STAP approach to airborne surveillance radars [C]// Proceedings of the 1997 IEEE National Radar Conference . Syracuse : IEEE , 1997 : 337 - 342 .
BROWN R D , SCHNEIBLE R A , WICKS M C , et al . STAP for clutter suppression with sum and difference beams [J]. IEEE Transactions on Aerospace and Electronic Systems , 2000 , 36 ( 2 ): 634 - 646 .
MOO P M . GMTI performance of ΣΔ-STAP for a forward-looking radar [C]// Proceedings of the 2001 IEEE Radar Conference . Atlanta : IEEE , 2001 : 258 - 263 .
PAINE A S . Minimum variance monopulse technique for an adaptive phased array radar [J]. IEEE Proceedings-Radar, Sonar and Navigation , 1998 , 145 ( 6 ): 374 - 380 .
NICKEL U . Performance analysis of space-time-adaptive monopulse [J]. Signal Processing , 2004 , 84 ( 9 ): 1561 - 1579 .
NICKEL U . Overview of generalized monopulse estimation [J]. IEEE Aerospace and Electronic Systems Magazine , 2006 , 21 ( 6 ): 27 - 56 .
NICKEL U R O , CHAUMETTE E , LARZABAL P . Statistical performance prediction of generalized monopulse estimation [J]. IEEE Transactions on Aerospace and Electronic Systems , 2011 , 47 ( 1 ): 381 - 404 .
FANTE R L . Synthesis of adaptive monopulse patterns [J]. IEEE Transactions on Antennas and Propagation , 1999 , 47 ( 5 ): 773 - 774 .
陈功 , 谢文冲 , 王永良 . 基于空时联合约束的机载雷达STAP单脉冲角度估计方法 [J]. 电子学报 , 2015 , 43 ( 3 ): 489 - 495 .
CHEN G , XIE W C , WANG Y L . Space-time adaptive monopulse angle estimation approach for airborne radar based on space-time joint constraint [J]. Acta Electronica Sinica , 2015 , 43 ( 3 ): 489 - 495 . (in Chinese)
XU J W , WANG C H , LIAO G S , et al . Sum and difference beamforming for angle-Doppler estimation with STAP-based radars [J]. IEEE Transactions on Aerospace and Electronic Systems , 2016 , 52 ( 6 ): 2825 - 2837 .
XU J W , ZHU S Q , LIAO G S , et al . Joint magnitude and phase constrained STAP approach [J]. Digital Signal Processing , 2015 , 46 : 32 - 40 .
XIONG Y Y , XIE W C . Multi-difference beams adaptive iterative monopulse estimation method for airborne radar [J]. Digital Signal Processing , 2022 , 120 : 103260 .
0
浏览量
13
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621