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一种基于散焦偏移差的全带宽机载SAR动目标检测方法

许睿鹏 仇晓兰 胡东辉 丁赤飚

许睿鹏, 仇晓兰, 胡东辉, 丁赤飚. 一种基于散焦偏移差的全带宽机载SAR动目标检测方法[J]. 电子与信息学报, 2010, 32(10): 2336-2341. doi: 10.3724/SP.J.1146.2009.01424
引用本文: 许睿鹏, 仇晓兰, 胡东辉, 丁赤飚. 一种基于散焦偏移差的全带宽机载SAR动目标检测方法[J]. 电子与信息学报, 2010, 32(10): 2336-2341. doi: 10.3724/SP.J.1146.2009.01424
Xu Rui-Peng, Chou Xiao-Lan, Hu Dong-Hui, Ding Chi-Biao. An Airborne Single-channel SAR-GMTI Method Based on Defocusing Shifted Difference[J]. Journal of Electronics & Information Technology, 2010, 32(10): 2336-2341. doi: 10.3724/SP.J.1146.2009.01424
Citation: Xu Rui-Peng, Chou Xiao-Lan, Hu Dong-Hui, Ding Chi-Biao. An Airborne Single-channel SAR-GMTI Method Based on Defocusing Shifted Difference[J]. Journal of Electronics & Information Technology, 2010, 32(10): 2336-2341. doi: 10.3724/SP.J.1146.2009.01424

一种基于散焦偏移差的全带宽机载SAR动目标检测方法

doi: 10.3724/SP.J.1146.2009.01424

An Airborne Single-channel SAR-GMTI Method Based on Defocusing Shifted Difference

  • 摘要: 该文分析了斜视下的动目标特性,在深入研究目标偏移量与多普勒参数间相互关系的基础上,提出了一种基于散焦偏移差的全带宽单通道机载合成孔径雷达动目标检测方法,该方法利用动/静目标存在多普勒中心频率差时,调频率偏差会引起动/静目标产生不同偏移量的特点,分离动/静目标。与传统的单通道检测方法相比,该方法具有更强的动目标检测能力、不受斜视角限制的特点。
  • [1] Wang H S C. Mainlobe clutter cancellation by DPCA for space-based radars[C]. IEEE Aerospace Applications Conference Digest, Crested Butte, Colorad, USA, February 3-8, 1991: 1-10. [2] 郑明洁, 杨汝良. 一种改进的DPCA运动目标检测方法[J].电子学报.2004, 32(9):1429-1432 Zheng Ming-jie and Yang Rui-liang. An improved DPCA moving targets detecting algorithm [J]. Acta Electronica Sinnca, 2004, 32(9): 1429-1432. [3] Sikaneta I and Gierull C H. Ground moving target detection for along-track interferometric SAR data[C]. IEEE Aerospace Conference, Big Sky, Montana, USA, Mar. 6-13, 2004: 2227-2235. [4] Chapin E and Chen C W. Along-track interferometry for ground moving target indication [J]. IEEE Aerospace and Electronic Systems Magazine, 2008, 23(6): 19-24. [5] Gierull C H, Maori D C, and Ender J. Ground moving target indication with tandem satellite constellations [J].IEEE Geoscience and Remote Sensing Letters.2008, 5(4):710-714 [6] Klemm R. Introduction to space-time adaptive processing [J].Electronics Communication Engineering Journal.1999, 11(1):5-12 [7] Klemm R and Ward J. STAP I-Architectures and algorithms[C]. IEEE Radar Conference, Rome, Italy, May 26-30, 2008: 1-2. [8] Kirscht M. Detection and imaging of arbitrary moving targets with single-channel SAR [J]. IEE Proc.-Radar Sonar Navigation, 2003, 150(1): 1984-1992. [9] Liu Shu-jun, Yuan Yun-neng, Gao fei, and Mao Shi-yi. Method of moving target detection based on sub-image cancellation for single-antenna airborne synthetic aperture radar [J].Journal of System Engineering and Electronics.2007, 18(3):448-453 [10] 张露, 郭华东, 韩春明, 周平. 基于子孔径分解的SAR动目标检测方法[J].电子学报.2008, 36(6):1210-1213 Zhang Lu, Guo Hua-dong, Han Chun-ming, and Zhou Ping. Moving targets detection in SAR images based on sub-aperture decomposition [J]. Acta Electronica Sinica, 2008, 36(6): 1210-1213. [11] Raney R K. Synthetic aperture imaging radar and moving targets [J].IEEE Transactions on Aerospace and Electronic System.1971, 7(3):499-505 [12] Freeman A and Currie A. Synthetic aperture radar images of moving targets [J]. GEC Journal of Research, 1987, 5(2): 106-115. [13] Cumming I G and Wong F H. Digital Processing of Synthetic Aperture Radar Data Algorithm and Implementation [M]. New York, Artech House, 2007: 89-105.
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出版历程
  • 收稿日期:  2009-11-02
  • 修回日期:  2010-04-14
  • 刊出日期:  2010-10-19

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