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一种新的极化SAR图像目标CFAR检测方法

王娜 时公涛 陆军 匡纲要

王娜, 时公涛, 陆军, 匡纲要. 一种新的极化SAR图像目标CFAR检测方法[J]. 电子与信息学报, 2011, 33(2): 395-400. doi: 10.3724/SP.J.1146.2010.00023
引用本文: 王娜, 时公涛, 陆军, 匡纲要. 一种新的极化SAR图像目标CFAR检测方法[J]. 电子与信息学报, 2011, 33(2): 395-400. doi: 10.3724/SP.J.1146.2010.00023
Wang Na, Shi Gong-Tao, Lu Jun, Kuang Gang-Yao. A New Polarimetric SAR Image CFAR Target Detecting Method[J]. Journal of Electronics & Information Technology, 2011, 33(2): 395-400. doi: 10.3724/SP.J.1146.2010.00023
Citation: Wang Na, Shi Gong-Tao, Lu Jun, Kuang Gang-Yao. A New Polarimetric SAR Image CFAR Target Detecting Method[J]. Journal of Electronics & Information Technology, 2011, 33(2): 395-400. doi: 10.3724/SP.J.1146.2010.00023

一种新的极化SAR图像目标CFAR检测方法

doi: 10.3724/SP.J.1146.2010.00023
基金项目: 

国家自然科学基金(60772045)资助课题

A New Polarimetric SAR Image CFAR Target Detecting Method

  • 摘要: 该文提出了一种新的极化SAR图像目标CFAR检测算法。首先,在乘积模型框架下,引入具有均匀度变化下广泛杂波区域建模能力的逆Gamma分布,推导出了极化匹配滤波(PMF)检测量的分布模型P-G0分布。进而,利用基于Mellin变换的对数累积量导出了P-G0分布的参数估计器,保证了PMF检测量的精确建模。最后,推导出P-G0分布的CFAR检测阈值求解公式,以此设计了新的CFAR检测算法。利用RADARSAT-2极化SAR数据的实验结果表明了P-G0分布对不同均匀度的地物都具有良好的拟合性能,所提检测算法能够实现均匀度变化较大环境下目标的准确、自动检测。
  • 代大海, 王雪松, 肖顺平, 等. PolSAR系统与技术的发展趋势[J]. 雷达科学与技术, 2008, 6(1): 15-22.Dai Da-hai, Wang Xue-song, and Xiao Shun-ping, et al.. Development trend of PolSAR system and technology[J]. Radar Science and Technology, 2008, 6(1): 15-22.[2]Fei Chu hong, Liu Ting, and Lampropoulos G, et al.. Markov chain CFAR detection for polarimetric data using data fusion[C]. IEEE conference proceedings on Digital Signal Processing, Santorini, Hellas, 2009: 1-6.[3]刘涛, 王雪松, 肖顺平. SAR多视图像的Stokes参数的统计分布[J].电子与信息学报.2008, 30(5):1027-1031浏览Liu Tao, Wang Xue-song, and Xiao Shun-ping. Statistics of the stokes parameters for multilook SAR image[J]. Journal of Electronics & Information Technology, 2008, 30(5): 1027-1031.[4]Hurtado M and Nehorai A, et al.. Polarimetric detection of targets in heavy inhomogeneous clutter[J].IEEE Transactions on Signal Processing.2008, 56(4):1349-1361[5]徐牧, 王雪松, 肖顺平. 基于散射机理分类与频谱相关性分析的极化SAR人造目标鉴别[J]. 信号处理, 2009, 25(3): 412-417.Xu Mu, Wang Xue-song, and Xiao Shun-ping. Man-made target discrimination identification and spectral correlation based on scattering mechanism property analysis of POLSAR images[J]. Signal Processing, 2009, 25(3): 412-417.[6]Novak L M and Burl M C. Optimal speckle reduction in PolSAR imagery and its effect on target detection[C]. SPIE in the proceeding of Millimeter Wave and Synthetic Aperture Radar, Orlando, USA, 1989, 110: 84-115.[7]Novak L M and Burl M C. Studies of target detection algorithms that use polarimetric radar data[J].IEEE Transactions on Aerospace and Electronic Systems.1989, 25(2):150-165[8]Sciotti M.[J].Pastina D, and Lombardo P. Polarimetric detectors of extended targets for ship detection in SAR images[C]. IGARSS01, Sydney, Australia.2001,:-[9]Ringrose Robert and Harris Nicola. Ship detection using polarimetric SAR data[C]. In Proc of the CEOS SAR workshop, Toulouse, France, 1999, 450: 687-691.[10]Touzi R. Calibrated polarimetric SAR data for ship detection[C]. IGARSS00, Honolulu, USA, 2000: 144-146.[11]Frery A C, Muller H J, and Yanasse C F, et al.. A model for extremely heterogeneous clutter[J].IEEE Transactions on Geoscience and Remote Sensing.1997, 35(3):648-659[12]时公涛, 高贵, 周晓光, 等. 基于Mellin变换的G0分布的参数估计方法[J]. 自然科学进展, 2009, 19(6): 677-690.Shi Gong-tao, Gao Gui, and Zhou Xiao-guang, et al.. G0 Distributions parameter estimation based on mellin transform[J].Progress in Natural Science.2009, 19(6):677-690[13]邓永录. 应用概率及其理论基础[M]. 北京:清华大学出版社, 2005: 62-63.Deng Yong-lu. Applied Probability and the Theory Foundation[M]. Beijing: Tsinghua University Press, 2005: 62-63.[14]Muller H J. Modeling of extremely heterogeneous radar backscatter[C]. IGARSS'97, Singapore, 1997, 4: 1603-1605.
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出版历程
  • 收稿日期:  2010-01-08
  • 修回日期:  2010-11-02
  • 刊出日期:  2011-02-19

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