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多通道SAR-GMTI通道盲均衡算法 被引量:3

Channel Blind Equalization Algorithm for Multi-channel SAR/GMTI System
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摘要 基于回波数据相关矩阵特征分解的通道盲均衡算法可有效校正多通道SAR系统中由各种非理想因素引起的通道幅度相位误差,但该算法主要的缺点是收敛速度慢。该文首先分析了基于回波数据相关矩阵特征分解的通道盲均衡算法的基本工作原理;在此基础上,针对算法收敛性差的缺点,结合降维处理技术,提出一种快速收敛的通道盲均衡算法。仿真及实测数据实验结果表明:与常规的基于回波数据相关矩阵特征分解的通道盲均衡算法相比,该文所提算法收敛所需的样本数目显著减少,即可在小训练样本条件下实现对通道幅度相位误差的均衡。 Channel blind equalization algorithm based on Eigen-Decomposition(ED) of data covariance matrix can be applied to calibrate the channel mismatch for multi-channel SAR/GMTI system.However,this algorithm has a disadvantage that it suffers from a slow convergence rate.In this paper,the principle of channel blind equalization algorithm is firstly investigated.Then,to improve its convergence rate,reduced-dimension technique is used into this algorithm and a new channel blind equalization algorithm is proposed.Experimental results on simulation data and measured SAR data demonstrate that compared with the conventional channel blind equalization algorithm,the proposed algorithm shows a fast convergence rate and is able to calibrate channel mismatch with much less sample support.
出处 《电子与信息学报》 EI CSCD 北大核心 2012年第6期1324-1330,共7页 Journal of Electronics & Information Technology
基金 国家自然科学基金(61071165) 教育部新世纪优秀人才支持计划(NCET-09-0069)资助课题
关键词 地面动目标检测 空域自适应处理 通道盲均衡 降维处理 Ground moving target detection Space adaptive processing Channel blind equalization Reduced-dimension technique
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参考文献13

  • 1Barber B C and Barker J E. The use of SAR-ATI for maritime surveillance and difficult target detection [C]. Proceeding of 2009 IEEE National Radar Conference, Bordeaux, France, 2009: 1-6.
  • 2Cerutti-Maori D, Gierull C H, and Ender J H G. Experimental verification of SAR/GMTI improvement through antenna switching [J]. IEEE Transactions on Geoscience and Remote Sensing, 2010, 48(4): 2066-2075.
  • 3Sun Hua-dong, Zhang Li-zhi, and Jin Xue-song. Parameter estimations based on DPCA-FrFT algorithm for three channel SAR/GMTI system [C]. The 2011 International Conference on Intelligent Computation Technology and Automation, Shenzhen, China, 2011: 640-644.
  • 4Sikaneta I C and Gierull C H. Adaptive CFAR for space-based multi-channel SAR/GMTI [C]. The 8th European Conference on Synthetic Aperture Radar, Aachen, Germany, 2010: 1-4.
  • 5吴迪,朱岱寅,朱兆达.基于改进FRACTA算法的多通道SAR动目标检测技术[J].电子与信息学报,2010,32(9):2201-2207. 被引量:4
  • 6Wang Ling, Zhen Lu-gui, and Guan Ya-lin. Novel space-time processing method for airborne SAR to detect and image the slowly moving targets [C]. 2010 Third International Joint Conference on Computational Science and Optimization, Huangshan, China, 2010: 435-439.
  • 7Wu Shun-jun and Li Ying-jun. Adaptive channel equalization for space time adaptive processing [C]. IEEE International Radar Conference, Lexandria, 1995: 624-628.
  • 8彭小亮,李荣锋,王永良,陈风波.两种修正的自适应通道均衡方法[J].电子与信息学报,2006,28(4):658-662. 被引量:12
  • 9Koerbor M A and Funhrmann D R. Radar antenna calibration using range-Doppler data [C]. IEEE 7th SP Workshop on Statistical Signal & Array Processing, Quebec, 1994: 441-444.
  • 10Ender J H G. Space time processing for multichannel synthetic aperture radar [C]. IEE Colloquimn on Space Time Adaptive Processing, London, 1998: 611-618.

二级参考文献31

  • 1廖桂生,保铮,张玉洪.机载雷达时-空二维部分联合自适应处理[J].电子科学学刊,1993,15(6):575-580. 被引量:31
  • 2郑明洁,杨汝良.一种改进的DPCA运动目标检测方法[J].电子学报,2004,32(9):1429-1432. 被引量:27
  • 3杨贤林,潘志刚,沈汀.机载双通道SAR/DPCA误差分析[J].电子与信息学报,2007,29(3):536-539. 被引量:5
  • 4Wang H S C. Mainlobe Clutter Cancellation by DPCA for Space-based Radars[C]//IEEE Aerospace Applications Conference. New York: IEEE, 19912 1-128.
  • 5Stockburger E F, Held D N. Interferometric Moving Ground Target Imaging[C]//IEEE International Radar Conference. Alexandria: IEEE, 1995: 438-443.
  • 6Ender J H G. Space-time Processing for Multichannel Synthetic Aperture Radar[J]. Electronics and Communication Engineering Journal, 1999, 11(1): 29-38.
  • 7Ender J H G. Space-time Adaptive Processing for Synthetic Aperture Radar[C]//Space-Time Adaptive Processing, IEE Colloquiumon. London: IEE, 1998: 611-618.
  • 8Koerbor M A, Fuhrmann D R. Radar Antenna Calibration Using Renge-Doppler Data[C]//IEEE 7th SP Workshop on Statistical Signal & Array Processing. Quebec: IEEE, 1994: 441-444.
  • 9Fennel M T and Wishner R P.Battlefield awareness via synergistic SAR and MTI exploitation[J].IEEE Aerospace Electronic System Magazine,1998,13(2):39-45.
  • 10Yadin E.A performance evaluation model for a two port interferometer SAR-MTI[C].IEEE National Radar Conference,Ann Arbor,Michigan,1996:261-266.

共引文献18

同被引文献25

  • 1Sun Hua-dong,Zhang Li-zhi,Jin Xue-song.Parameter estimations based on DPCA-FrFT algorithm for three channel SAR/GMTI system[A].Proceedings of The 2011 International Conference on Intelligent Computation Technology and Automation[C].Shenzhen,China:IEEE,2011.640-644.
  • 2GIERULL C H.Moving Target Detection with Along-Track SAR Interferometry Theoretical Analysis[R].Canada:Defense Research and Development,2002.
  • 3Wu Shun-jun,Li Ying-jun.Adaptive channel equalization for space time adaptive processing[A].Proceedings of The IEEE 1995 International Radar Conference[C].Alexandria,Egypt:IEEE,1995.624-628.
  • 4KOERBOR M A,FUNHRMANN D R.Radar antenna calibration using range-Doppler data[A].Proceedings of IEEE 7th SP Workshop on Statistical Signal & Array Processing[C].Quebec:IEEE,1994.441-444.
  • 5ENDER J H G.Space time processing for multichannel synthetic aperture radar[A].Proceedings of IEE Colloquium on Space Time Adaptive Processing[C].London:IEE,1998.611-618.
  • 6MELVIN W L,SHOWMAN G A.An approach to knowledge-aided covariance estimation[J].IEEE Transactions on Aerospace and Electronic Systems,2006,42(3):1021-1042.
  • 7GERLACH K,PICCIOLO M L.Airborne-spacebased radar STAP using a structured covariance matrix[J].IEEE Transactions on Aerospace and Electronic Systems,2003,39(1):269-281.
  • 8SIKANETA I C.PHD Thesis Proposal:Detection of Ground Moving Objects with Synthetic Aperture Radar[D].Ottawa,Canada:University of Ottawa,2002.
  • 9YADIN E.A performance evaluation model for a two port interferometer SAR-MTI[A].Proceedings of IEEE National Radar Conference[C].Ann Arbor,Michigan:IEEE,1996.261-266.
  • 10PICCIOL M L,GERLACH K.Median cascaded canceller for robust adaptive array processing[J].IEEE Transactions on Aerospace and Electronic Systems,2003,39(3):883-900.

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