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数字电视辐射源雷达的相参积累徙动补偿方法

杨金禄 单涛 陶然

杨金禄, 单涛, 陶然. 数字电视辐射源雷达的相参积累徙动补偿方法[J]. 电子与信息学报, 2011, 33(2): 407-411. doi: 10.3724/SP.J.1146.2010.00414
引用本文: 杨金禄, 单涛, 陶然. 数字电视辐射源雷达的相参积累徙动补偿方法[J]. 电子与信息学报, 2011, 33(2): 407-411. doi: 10.3724/SP.J.1146.2010.00414
Yang Jin-Lu, Dan Tao, Tao Ran. Method of Migration Compensation in Coherent Integration for Digital TV Based Passive Radar[J]. Journal of Electronics & Information Technology, 2011, 33(2): 407-411. doi: 10.3724/SP.J.1146.2010.00414
Citation: Yang Jin-Lu, Dan Tao, Tao Ran. Method of Migration Compensation in Coherent Integration for Digital TV Based Passive Radar[J]. Journal of Electronics & Information Technology, 2011, 33(2): 407-411. doi: 10.3724/SP.J.1146.2010.00414

数字电视辐射源雷达的相参积累徙动补偿方法

doi: 10.3724/SP.J.1146.2010.00414
基金项目: 

国家部委基金资助课题

Method of Migration Compensation in Coherent Integration for Digital TV Based Passive Radar

  • 摘要: 增加相参积累时间是提高数字电视辐射源雷达探测能力的主要途径,但目标的速度和加速度导致的距离徙动和多普勒徙动限制了相参积累时间的进一步增加。该文给出了外辐射源雷达中匀加速运动目标的回波模型,分析了目标速度和加速度对相参积累的影响,提出了基于包络插值和分数阶傅里叶变换的数字电视辐射源雷达徙动补偿算法。仿真结果表明,该算法可有效补偿长时间积累和目标运动导致的距离徙动和多普勒徙动,提高了相参积累增益,从而使相参积累时间不再受目标速度和加速度的限制。
  • Griffiths H D and Baker C J. Passive coherent location radar systemsPart 1: performance predication[J].. IEE Proceedings Radar Sonar Navigation.2005, 152(3):153-159[2]Saini R and Cherniakov M. DTV signal ambiguity function analysis for radar application[J].IEE Procedings Radar Sonar Navigation.2005, 152(3):133-142[3]保铮. 雷达信号的长时间积累[C]. 第七届全国雷达学术年会, 南京, 1999: 9-15.[4]Bao Zheng. Long-term integration of radar signal[C]. The 7th Chinese Radar Conference, Nanjing, 1999: 9-15.[5]张焕颖, 张守宏, 李强. 高速运动目标的ISAR成像方法[J].电子与信息学报.2007, 29(8):1789-1793浏览Zhang Huan-ying, Zhang Shou-hong, and Li Qiang. ISAR imaging of high speed moving targets[J]. Journal of Electronics and Information Technology, 2007, 29(8): 1789-1793.[6]Chen C C and Andrews H C. Target-motion-induced radar imaging[J].IEEE Transactions on Aerospace and Electronic Systems.1980, 16(1):1-14[7]唐晓青, 向茂生, 吴一戎. 一种改进的基于DEM的机载重轨干涉SAR运动补偿算法[J].电子与信息学报.2009, 31(5):1090-1094浏览Tang Xiao-qing, Xiang Mao-sheng, and Wu Yi-rong. An improved topography-dependent motion compensation approach for airborne repeat-Pass interferometric SAR systems[J]. Journal of Electronics and Information Technology, 2009, 31(5): 1090-1094.[8]Xing Meng-dao, Jiang Xiu-wei, Wu Ren-biao, Zhou Feng, and Bao Zheng. Motion compensation for UAV SAR based on raw radar data[J].IEEE Transactions on Geoscience and Remote Sensing.2009, 47(8):2870-2883[9]Callow H J, Hayes M P, and Gough P T. Motion- compensation improvement for widebeam, multiple-receiver SAS systems[J].IEEE Journal of Oceanic Engineering.2009, 34(3):262-268[10]陈远征, 朱永锋, 赵宏钟, 付强. 基于包络插值移位补偿的高速运动目标的积累检测算法研究[J]. 信号处理, 2004, 20(4): 387-390.Chen Yuan-zheng, Zhu Yong-feng, Zhao Hong-zhong, and Fu Qiang. Detection algorithm research of high velocity moving target based on the envelope interpolation[J]. Signal Processing, 2004, 20(4): 387-390.[11]Yasotharan A and Thayaparan T. Time-frequency method for detecting an accelerating target in sea clutter[J].IEEE Transactions on Aerospace and Electronic Systems.2006, 42(4):1289-1310[12]Xia Xiang-gen. Discrete chirp-Fourier transform and its application to chirp rate estimation [J]. IEEE Transactions on Signal Processing, 2009, 40(11): 3122-3133.[13]杨振起, 张永顺, 骆永军. 双(多)基地雷达系统[M]. 北京: 国防工业出版社, 1998: 75-80.[14]Yang Zhen-qi, Zhang Yong-shun, and Luo Yong-jun. Bistatic (Multistatic) Radar Systems[M]. Beijing: National defense industry Press, 1998: 75-80.[15]陶然, 邓兵, 王越. 分数阶傅里叶变换及其应用[M]. 北京: 清华大学出版社, 2009: 12-15.[16]Tao Ran, Deng Bing, and Wang Yue. Fractional Fourier Transform and Its Applications[M]. Beijing: Tsinghua University Press, 2009: 12-15.
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出版历程
  • 收稿日期:  2010-04-23
  • 修回日期:  2010-09-23
  • 刊出日期:  2011-02-19

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