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子带子孔径ATI地面运动目标检测及参数估计方法

周红 黄晓涛 常玉林 周智敏

周红, 黄晓涛, 常玉林, 周智敏. 子带子孔径ATI地面运动目标检测及参数估计方法[J]. 电子与信息学报, 2010, 32(1): 62-68. doi: 10.3724/SP.J.1146.2008.01561
引用本文: 周红, 黄晓涛, 常玉林, 周智敏. 子带子孔径ATI地面运动目标检测及参数估计方法[J]. 电子与信息学报, 2010, 32(1): 62-68. doi: 10.3724/SP.J.1146.2008.01561
Zhou Hong, Huang Xiao-tao, Chang Yu-lin, Zhou Zhi-min. A Ground Moving Target Detection and Parameter Estimation Method Using Subband and Subaperture Along Track Interferometry[J]. Journal of Electronics & Information Technology, 2010, 32(1): 62-68. doi: 10.3724/SP.J.1146.2008.01561
Citation: Zhou Hong, Huang Xiao-tao, Chang Yu-lin, Zhou Zhi-min. A Ground Moving Target Detection and Parameter Estimation Method Using Subband and Subaperture Along Track Interferometry[J]. Journal of Electronics & Information Technology, 2010, 32(1): 62-68. doi: 10.3724/SP.J.1146.2008.01561

子带子孔径ATI地面运动目标检测及参数估计方法

doi: 10.3724/SP.J.1146.2008.01561

A Ground Moving Target Detection and Parameter Estimation Method Using Subband and Subaperture Along Track Interferometry

  • 摘要: 该文提出了一种新的基于子带子孔径图像序列的顺轨干涉(ATI)地面运动目标检测方法。该方法利用超宽带合成孔径雷达(UWB SAR)的大带宽大波束角和低频特性,生成了对应不同中心频率和视角的多幅子带子孔径顺轨干涉图,并联合运动目标的多频多子孔径干涉相位进行地面运动目标检测和参数估计。该方法相比传统的ATI方法的优点在于:在检测方面,消除了盲速,既能检测具有距离向速度的目标,又能检测具有方位向速度的目标;在速度估计方面,能无模糊地同时估计出目标的距离向速度和方位向速度。基于UWB SAR半实测回波的实验验证了该方法的有效性。
  • [1] Zhang Yu-hong. Along Track Interferometry SyntheticAperture Radar (ATI-SAR) techniques for ground movingtarget detection. Air Force Research Laboratory, New York,January 2006. [2] Kapfer R and Davis M E. Along track interferometry forfoliage penetration moving target indication. Proceedings ofIEEE 2008 Radar Conference, Rome, Italy, 2008: 321-326. [3] Chapin Elaine and Chen C W. Along-track interferometry forground moving target indication[J].IEEE AE SystemsMagzine, Phonecix, AZ, USA.2008, 23:19-24 [4] Fischer J, Baumgartner S, and Reigber A, et al.. Geometric,radiometric, polarimetric and along-track interferometriccalibration of the new F-SAR system of DLR in X-band.Proceedings of 7th European Conference on SAR,Friedrichshafen, Germany, 2008, 3: 109-112. [5] Wu Xin-wei and Zhang C. A new method of resolving velocityambiguities in multi-channel interferometric SARGMTI.2006 CIE International Conference on Radar, Shanghai, 2006:1-4. [6] Budillon A, Pascazio V, and Schirinzi G. Estimation of radialvelocity of moving targets by along-track interferometricSAR systems[J].IEEE Geoscience and Remote Sensing Letters.2008, 5(3):349-353 [7] Gabele M and SIkaneta I. A new method to create a virtualthird antenna from a two-channel SAR GMTI system. 2007Waveform Diversity Design, Pisa, Italy, 2007: 433-437. Zhou Hong, Huang Xiao-tao, Chang Yu-lin, and ZhouZhi-min. Single-channel UWB SAR ground moving targetsdetection method using change detection based on single-passsub-aperture images. 2007 1st Asian and Pacific Conferenceon SAR, Huangshan, 2007: 266-270. [8] 常玉林, 黄晓涛, 周红, 周智敏. 基于ATI 的双通道UWBSAR 运动目标检测和距离向速度估计. 信号处理, 2008, 24(5):742-746.Chang Yu-lin, Huang Xiao-tao, Zhou Hong, and ZhouZhi-min. Moving target detection and velocity estimation viaalong track interferency using two-channel UWB SAR. SignalProcessing, 2008, 24(5): 742-746. [9] Andres C, Scheiber R, Bachmann M, Gonzalez J H, andKrieger G. Phase unwrapping for multiple interferograms: anairborne experiment for TanDEM-X. Proceedings of 7thEuropean Conference on Synthetic Aperture Radar,Friedrichshafen, Germany, 2008, 3: 281-284. [10] Chen C W. Performance assessment of along-trackinterferometry for detecting ground moving targets, IEEEInternational Radar Conference 2004, Philadelphia, USA,2004: 99-104. [11] Gierull C H. Ground moving target parameter estimation fortwo-channel SAR. IEE Proceedings on Radar, Sonar andNavigation, 2006, 53(3): 224-233. [12] 张焕胜, 祁海明, 杨汝良. 基于最小二乘估计和小波去噪的ATI-SAR 自适应相位校正方法[J].电子与信息学报.2007, 29(5):1073-1076浏览
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出版历程
  • 收稿日期:  2008-11-26
  • 修回日期:  2009-07-14
  • 刊出日期:  2010-01-19

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