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干扰背景下瞬时极化测量雷达的目标识别预处理技术

王涛 王雪松 刘进 肖顺平

王涛, 王雪松, 刘进, 肖顺平. 干扰背景下瞬时极化测量雷达的目标识别预处理技术[J]. 电子与信息学报, 2008, 30(10): 2333-2337. doi: 10.3724/SP.J.1146.2007.01525
引用本文: 王涛, 王雪松, 刘进, 肖顺平. 干扰背景下瞬时极化测量雷达的目标识别预处理技术[J]. 电子与信息学报, 2008, 30(10): 2333-2337. doi: 10.3724/SP.J.1146.2007.01525
Wang Tao, Wang Xue-Song, Liu Jin, Xiao Shun-Ping. Preprocessing of Target Recognition of the Instantaneous Polarimetric Radar in the Jamming Situation[J]. Journal of Electronics & Information Technology, 2008, 30(10): 2333-2337. doi: 10.3724/SP.J.1146.2007.01525
Citation: Wang Tao, Wang Xue-Song, Liu Jin, Xiao Shun-Ping. Preprocessing of Target Recognition of the Instantaneous Polarimetric Radar in the Jamming Situation[J]. Journal of Electronics & Information Technology, 2008, 30(10): 2333-2337. doi: 10.3724/SP.J.1146.2007.01525

干扰背景下瞬时极化测量雷达的目标识别预处理技术

doi: 10.3724/SP.J.1146.2007.01525
基金项目: 

国家自然科学基金重点项目(60736006)资助课题

Preprocessing of Target Recognition of the Instantaneous Polarimetric Radar in the Jamming Situation

  • 摘要: 该文以瞬时极化测量雷达的攻防对抗为背景,分析了单极化有源干扰机形成的假目标的极化散射特性。分析结果表明,在同样的干扰样式下,干扰机在分时极化测量雷达和瞬时极化测量雷达下生成的假目标具有不同的散射特性。在单极化有源假目标极化散射特性分析基础上,针对对抗条件下极化雷达无法准确测量目标散射矩阵的情况,提出了一种基于不完整极化测量的目标识别预处理方法。该方法能够有效获取目标三个极化散射矩阵序列,它们可以用作目标识别的稳健特征量。
  • [1] Lewis G N, et al.. Future challenges to ballistic missile defense.IEEE spectrum, 1997, (9): 60-68. [2] Okuyucu A. Effects of Jamming on radars. [Marster,s Thesis],USA: Air Force Institute of Technology Air University, March,2000. [3] Soumekh M. SAR-ECCM using phase-perturbed LFM chirpsignals and DRFM repeat jammer penalization[J].IEEE Trans.on Aerospace and Electronic Systems.2006, 42(1):191-205 [4] Pace P E, Fouts D J, and Ekestrrm S, et al.. Digitalfalse-target image synthesizer for countering ISAR[J].IEEProceedings-Radar, Sonar and Navigation.2002, 149(5):248-257 [5] Fernando A L D. Performance analysis of digital imagesynthesizer as a counter-measure against inversesyntheticradar. [Master's dissertation], Naval PostgraduateSchool, Monterey CA, 2002. [6] William R. Chadwick. Augmentation of high altidudemaneuver performance of a tail controlled missile usinglateral thrust . ADA328973, Dahlgren, VA. 1997. [7] 庄钊文, 李永祯, 肖顺平等. 瞬态极化的统计特性分析及处理.北京: 国防工业出版社, 2005: 234-311.Zhuang Zhao-wen, Li Yong-zhen, and Xiao Shun-ping, et al..Statistical Characteristics and Processing of InstantaneousPolarization. Beijing: Press of National Defense Industry,2005: 234-311. [8] Giuli D. Polarization diversity in radars[J].Proc. IEEE.1986,74 (2):245-269 [9] 王雪松, 王剑, 王涛等. 雷达目标极化散射矩阵的瞬时测量方法. 电子学报, 2006, 36(6): 1020-1025.Wang Xue-song, Wang Jian, and Wang Tao, et al..Instantaneous measurement of radar target polarizationscattering matrix. Acta Electronica Sinica, 2006, 36(6):1020-1025. [10] Howard S D. et al.. A simple signal processing architecture forinstantaneous radar polarimetry. IEEE Trans. onInformation Theory, 2007, 53(4): 1282-1289. [11] 王涛, 王雪松, 肖顺平. 随机调制单极化有源假目标的极化鉴别研究. 自然科学进展, 2006, 16(5): 611-617.Wang Tao, Wang Xue-song, and Xiao Shun-ping.Discrimination of single polarized active decoys randommodulated. Progress in Natural Science, 2006, 16(5): 611-617. [12] Zhao Q and Principle J C. Support vector machines for SARautomatic target recognition[J].IEEE Trans. on Aerospace andElectronic Systems.2001, 37(2):643-654 [13] Bilik I, Tabrikian J, and Cohen A. GMM-Based targetclassification for ground surveillance doppler radar[J].IEEETrans. on Aerospace and Electronic Systems.2006, 42(1):267-278 [14] Colton D and Monk P B. Target identification of coatedobjects[J].IEEE Trans. on Antenna and Propagation.2006,54(4):1232-1242 [15] 庄钊文, 肖顺平, 王雪松. 雷达极化信息处理及应用. 北京:国防工业出版社, 1999: 142-150.Zhuang Zhao-wen, Xiao Shun-ping, and Wang Xue-song.Radar Polarization Information Processing and Application.Beijing: Press of National Defense Industry, 1999: 142-150. [16] 陈景良, 陈向晖. 特殊矩阵, 北京: 清华大学出版社, 2001:136-144.Chen Jing-liang and Chen Xiang-hui. Special Matrix. Beijing:Tsinghua University Press, 2001: 136-144.
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出版历程
  • 收稿日期:  2007-09-20
  • 修回日期:  2008-04-07
  • 刊出日期:  2008-10-19

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