用于高分辨率宽测绘带SAR系统的SAR/GMTI处理方法研究

邢孟道 孙光才 李学仕

邢孟道, 孙光才, 李学仕. 用于高分辨率宽测绘带SAR系统的SAR/GMTI处理方法研究[J]. 雷达学报, 2015, 4(4): 375-385. doi: 10.12000/JR15096
引用本文: 邢孟道, 孙光才, 李学仕. 用于高分辨率宽测绘带SAR系统的SAR/GMTI处理方法研究[J]. 雷达学报, 2015, 4(4): 375-385. doi: 10.12000/JR15096
Xing Meng-dao, Sun Guang-cai, Li Xue-shi. Study on SAR/GMTI Processing for High-resolution Wide-swath SAR System[J]. Journal of Radars, 2015, 4(4): 375-385. doi: 10.12000/JR15096
Citation: Xing Meng-dao, Sun Guang-cai, Li Xue-shi. Study on SAR/GMTI Processing for High-resolution Wide-swath SAR System[J]. Journal of Radars, 2015, 4(4): 375-385. doi: 10.12000/JR15096

用于高分辨率宽测绘带SAR系统的SAR/GMTI处理方法研究

doi: 10.12000/JR15096
基金项目: 

国家自然科学基金(61222108, 61301292, 61101245)和中央高校基本科研业务费专项资金(K5051302058, K5051302046)

详细信息
    作者简介:

    邢孟道(1975–),男,浙江嵊州人,西安电子科技大学教授,博士生导师,主要研究方向为雷达成像、目标识别和天波超视距雷达信号处理。E-mail:xmd@xidian.edu.cn;孙光才(1984–),男,湖北孝感汉川人,西安电子科技大学讲师,主要研究方向为多通道波束指向SAR成像和SAR动目标成像。E-mail:rsandsgc@126.com;李学仕(1988–),男,黑龙江哈尔滨人,西安电子科技大学信号与信息处理专业博士研究生,主要研究方向为SAR成像及SAR动目标成像。E-mail:lixueshi@stu.xidian.edu.cn

    通讯作者:

    李学仕lixueshi@stu.xidian.edu.cn

Study on SAR/GMTI Processing for High-resolution Wide-swath SAR System

Funds: 

National Natural Science Foundation of China (61222108, 61301292, 61101245)

  • 摘要: 随着科技的不断发展,高分辨宽测绘(High-Resolution and Wide-Swath, HRWS)SAR成像已经越来越受到人们的关注,具有地面动目标指示(Ground Moving Target Indication, GMTI)功能的SAR成像系统因其具有对静止场景进行高分辨成像和动目标检测能力在很多军用和民用领域受到广泛运用。具有HRWS成像能力的沿方位多通道SAR系统,其可以有效地解决高分辨和低脉冲重复频率(Pulse Repetition Frequency, PRF)的矛盾,该矛盾在HRWS成像处理过程中经常遇到。由于方位空域自由度可以用来进行杂波抑制,因此多通道构型具有提供GMTI潜能。该文提出一种新的杂波抑制和动目标的成像方法,使得在低PRF的HRWS系统进行SAR成像的同时可以完成动目标的检测与成像处理,而不需要单独的高PRF系统操作模式。

     

  • [1] Gierull C H and Sikaneta I C. Raw data based two-aperture SAR ground moving target indication[C]. Proceedings 2003 IEEE IGARSS'03, Toulouse, France, 2003, 2: 1032-1034.
    [2] Wang H S C. Mainlobe clutter cancellation by DPCA for space-based Radars[C]. Aerospace Applications Conference, Creasted Butte, CO, USA, 1991: 124-128.
    [3] Shen Chiu. Application of fractional Fourier transform to moving target indication via along-track interferometry[J]. EURASIP Journal on Applied Signal Processing, 2005(20): 3293-3303.
    [4] Breit H, Eineder M, Holzner J, et al.. Traffic monitoring using SRTM along-track interferometry[C]. Proceedings 2003 IEEE IGARSS'03, 2003, 2: 1187-1189.
    [5] Breit H and Eineder M. Traffic monitoring using SRTM along-track interometry[C]. IGARSS 2003, France, 2003: 1187-1189.
    [6] Klemm R. Introduction to space-time adaptive processing[J]. Electronics Communication Engineering Journal, 1999, 11(1): 5-12.
    [7] Zhang S, Xing M, Xia X, et al.. A novel moving target imaging algorithm for multi-channel in azimuth HRWS SAR based on local maximum-likelihood minimum entropy in range frequency[J]. IEEE Transactions on Geoscience and Remote Sensing, 2014, 52(11): 5333-5347.
    [8] Xia X G. Discrete chirp-Fourier transform and its application to chirp rate[J]. IEEE Transactions on Signal Processing, 2000, 48(11): 3122-3133.
    [9] Madsen S N. Estimating the Doppler centroid of SAR data[J]. IEEE Transactions on Aerospace and Electronic Systems, 1989, 25(2): 134-140.
    [10] Cumming I G, Kavanagh P F, Ito M R, et al.. Resolving the Doppler ambiguity for spaceborne synthetic aperture radar[C]. Proceedings 2003 IEEE IGARSS'03, Zurich, Switzerland, 1986: 1639-1643.
    [11] Zhang S, Xing M, Xia X, et al.. Multi-channel HRWS SAR imaging based on range-variant channel-calibration and multi-Doppler-direction restriction ambiguity suppression[J]. IEEE Transactions on Geoscience Remote Sensing, 2014, 52(9): 4306-4326.
    [12] Delphine C and Ishuwa S. Optimum GMTI processing for space-based SAR/GMTI systems-Theoretical derivation[C]. 2010 8th European Conference on Synthetic Aperture Radar, Aachen, Germany, 2010: 390-393.
    [13] Cerutti-Maori D and Sikaneta I. Optimum GMTI processing for spacebased SAR/GMTI systems-Simulation results[C]. 2010 8th European Conference on Synthetic Aperture Radar, Aachen, Aachen, Germany, 2010: 653-656.
    [14] Cerutti-Maori D, Gierull C H, and Ender J H G. Optimum SAR/GMTI processing and its application to the radar satellite RADARSAT-2 for traffic monitoring[J]. IEEE Transactions on Geoscience and Remote Sensing, 2012, 50(10): 3868-3881.
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出版历程
  • 收稿日期:  2015-08-15
  • 修回日期:  2015-09-10
  • 网络出版日期:  2015-08-28

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