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基于正交投影的海面小目标检测技术 被引量:2

Detection of Small Target on the Sea Surface Using Orthogonal Projection
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摘要 强烈的海杂波将海面低速运动小目标的回波信号淹没,导致雷达难以检测到目标。针对这一问题,该文提出了基于正交投影的恒虚警率(CFAR)检测方法。该方法利用邻近距离单元杂波的相关性,通过正交投影方法实现对杂波的抑制,进而实现CFAR检测。同时,该文给出了基于正交投影的CFAR检测器实现结构图,对比分析了正交投影方法与奇异值分解方法的杂波抑制效果和计算量。理论分析与实测数据处理结果验证了该文所提方法的优越性。 Fierce sea clutter submerges the slow weak target echo which makes the target detection difficult. To address the problem, a Constant False Alarm Rate (CFAR) detection method based on orthogonal projection is proposed in this paper. Utilizing the correlation of the clutter between neighbored range cells, this method suppresses clutter by orthogonal projection at first, and then carries out the CFAR detection. The structure chart of the CFAR detector using orthogonal projection is given. And the performance of clutter suppression and computation amount for orthogonal projection method and singular value decomposition method are compared. Theoretical analysis and simulation results with the experimental data show the superiority of the proposed method.
出处 《电子与信息学报》 EI CSCD 北大核心 2013年第1期24-28,共5页 Journal of Electronics & Information Technology
基金 国家自然科学基金(61072119) 湖南省研究生科研创新项目(CX2011B021) 国防科技大学优秀研究生创新项目(B110406)资助课题
关键词 目标检测 杂波 正交投影 奇异值分解 恒虚警率 Target detection Clutter Orthogonal projection Singular Value Decomposition (SVD) Constant False Alarm Rate (CFAR)
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参考文献16

  • 1Sen S,Tang G G,and Nehorai A. Multiobjective optimization of OFDM radar waveform for target detection[J].{H}IEEE Transactions on Signal Processing,2011,(02):639-652.
  • 2Sira P S,Cochran D,and Papandreou-Sappappda A. Adaptive waveform design for improved detection of low-RCS targets in heavy sea clutter[J].IEEE Journal of Selected Topics in Signal Processing,2007,(01):56-66.
  • 3McDonald M,Lycett S. Fast versus slow scan radar operation for coherent small target detection in sea clutter[J].IEE Proceedings Radar Sonar and Navigation,2005,(06):429-435.
  • 4Sangston K J,Gini F,and Greco M S. Coherent radar target detection in heavy-tailed compound-Gaussian clutter[J].{H}IEEE Transactions on Aerospace and Electronic Systems,2012,(01):64-77.
  • 5Maio D A,Alfano G,and Conte E. Polarization diversity detection in compound-Gaussian clutter[J].{H}IEEE Transactions on Aerospace and Electronic Systems,2004,(01):114-131.
  • 6Liu J,Zhang Z J,and Yang Y. Performance enhancement of subspace detection with a diversely polarized antenna[J].{H}IEEE Signal Processing Letters,2012,(01):4-7.
  • 7Gini F,Farina A,and Montanari M. Vector subspace detection in compound-Gaussian clutter part II:performance analysis[J].{H}IEEE Transactions on Aerospace and Electronic Systems,2002,(04):1312-1323.
  • 8Wang G,Xia X G,Root B T. Manoeuvring target detection in over-the-horizon radar using adaptive clutter rejection and adaptive chirplet transform[J].IEE Proceedings Radar Sonar and Navigation,2003,(04):292-298.
  • 9Panagopoulos S and Soraghan J J. Small-target detection in sea clutter[J].{H}IEEE Transactions on Geoscience and Remote Sensing,2004,(07):1355-1361.
  • 10Leung H and Young A. Small target detection in clutter using recursive nonlinear prediction[J].{H}IEEE Transactions on Aerospace and Electronic Systems,2000,(02):713-718.

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