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提高双通道低频SAR干涉图性能的方法 被引量:2

A Method to Improve the Performance of the Along-Track Interference Image in Dual-Channel Low Frequency SAR
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摘要 沿航向干涉法是一种检测运动目标简单易行的有效方法。在低频双通道SAR系统中,为了保证干涉性能,不仅要考虑降低图像相干性的各类误差,还要考虑实时成像过程中残留的RFI对通道图像的影响。本文首先与高频系统中的误差进行比较,分析了影响低频双通道SAR系统的主要误差及其特点;其次分析了RFI对干涉图干扰的基本原理与特征,进而提出了一种提高双通道低频SAR干涉图性能的误差校正方法。该方法充分考虑了低频SAR系统的接收机频率特性误差、天线方向图误差、干涉相位误差及图像配准误差,利用基于方位时域距离频域干涉图的中值滤波器能够有效抑制具有窄带特性、时变性和空变性的RFI信号。国内首批机载双通道低频SAR实测数据验证了该方法的有效性与可靠性。该算法运算简单,效率高,适合对沿航向干涉法的实时处理。 Along track interferometry(ATI) is an easy and efficient method to detect ground moving targets.In low frequency synthetic aperture radar(SAR) system,it is necessary to consider not only kinds of errors that will reduce the coherence of image pairs,but also the unsuppressed radio-frequency interference(RFI) left from the real-time imaging.This paper first analyzes the characteristic of each error in low frequency dual-channel SAR,comparing to those in the high frequency band system,and then analyzes the principle and characteristic of RFI on the interferometric image.A method to improve the performance of along-track interferometric image in low frequency SAR has been proposed further.This method can compensate the difference of receiver frequency,the difference of beam pattern,interferometric error and coregistration error,and use median filters in the azimuth-time range-frequency domain interferometric image to suppress the residual RFI with narrow bandwidth,varying with slow time and radiation angle.The first domestic real data with dual-channel low frequency SAR system has tested the effectiveness and feasibility of this method.It has shown that this method can be operated easily and efficiently with low computation,which is suitable for the real time processing of ATI.
出处 《信号处理》 CSCD 北大核心 2012年第3期335-343,共9页 Journal of Signal Processing
基金 教育部新世纪优秀人才支持计划(NCET-07-0223) 国防科学技术大学博士研究生创新资助(B100401)
关键词 射频干扰抑制 沿航迹干涉 低频合成孔径雷达 radio-frequency interference suppression along track interferometry low frequency synthetic aperture radar
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参考文献11

  • 1张立峰,王彤,邢孟道,保铮.多通道SAR-GMTI通道均衡和动目标检测定位方法[J].西安电子科技大学学报,2009,36(1):11-16. 被引量:6
  • 2Yuhong Zhang,Kyungjung Kim.A Dual-Threshold ATI-SAR Approach for Detecting Slow Moving Targets[C].Radar Conference,2005 IEEE International.IEEE,2005:295-299.
  • 3吕孝雷,苏军海,邢孟道,张守宏.三通道SAR-GMTI误差校正方法的研究[J].系统工程与电子技术,2008,30(6):1037-1042. 被引量:14
  • 4王彤,保铮.提高沿航向干涉法性能的最小二乘图像对补偿方法[J].自然科学进展,2008,18(12):1484-1490. 被引量:4
  • 5黄晓涛,梁甸农,周智敏.基于TH神经网络的UWB-SAR抑制RFI方法[J].电子学报,2000,28(9):23-26. 被引量:7
  • 6X Luo,et al.RFI Suppression in UWB SAR using LMS filters in frequency domain[J].IEE Electronics Letters,2001,37(4):241-243.
  • 7Zhou,F.,Wu,R.,Xing,M.,and Bao,Z..Eigensub-space-based filtering with application in narrow-band in-terference suppressing for SAR[J].IEEE Geosci.Remote Sens.Lett.,2007,4(1):75-79.
  • 8Gierull,C.H.Statistical analysis of multilook SAR inter-ferograms for CFAR detection of ground moving targets[J].IEEE Trans on Geosci.Remote Sens.,2004,42,(4):691-701.
  • 9Wu,S.,and Li,Y.Adaptive channel equalization forspace-time adaptive processing[C].Proc.IEEE Int.Conf.on Radar,Alexandria,VA,May 1995:624-628.
  • 10Vu,V.T.,Sjgren,T.K.,Pettersson,M.I.,Hkansson,L.,Gustavsson,A.,and Ulander,L.M.H.RFIsuppression in ultrawideband SAR using an adaptive lineenhancer[J].IEEE Geosci.Remote Sens.Lett.,2010,7,(4):694-698.

二级参考文献18

共引文献27

同被引文献15

  • 1Suess M,Grafmueller B,Zahn R.A novel high resolution,wide swath SAR system[C]//Proc.IEEE Int.Geosci.Remote Sens.Symp.,Sydney,Australia,2001:1013-1015.
  • 2Mittermayer J,Wollstadt S,Prats-Iraola P,et al.Bidirectional SAR Imaging Mode[J].IEEE Trans.on GRS.,2013,51 (1):601-614.
  • 3Currie A,Brown M A.Wide-swath SAR[J].IEE Proc.Inst.Elect.Eng.F.,1992,139(2):122-135.
  • 4Cummig I G,Wong F H.Digital signal processing of synthetic aperture Radar data:algorithms and implementation[M].Norwood:Artech House,2004:41-43.
  • 5Krieger G,Gebert N,Moreira A.Unambiguous SAR signal reconstruction from nonuniform displaced phase center sampling[J].IEEE GRS.Letters,2004,1 (4):260-264.
  • 6Davidson G W,Cumming I G,Ito M R.A chirp scaling approach for processing squint mode SAR data[J].IEEE Trans.on AES,1996,32(1):121-133.
  • 7Gebert N,Krieger G,Moreira A.Digital beamforming on receive:techniques and optimization strategies for highresolution wide-swath SAR imaging[J].IEEE Trans.on AES,2009,45(2):564-592.
  • 8Wang W Q.Near-space vehicle-borne SAR with reflector antenna for high-resolution and wide-swath remote sensing[J].IEEE Trans.on GRS,2012,50(2):338-348.
  • 9Marcel M J,Baker J.Interdisciplinary design of a nearspace vehicle[C]// Proc.Southeast Conf.,Richmond,VA,Mar.2007:421-426.
  • 10Tomme E B.Balloons in today' s military:An introduction to near-space concept[J].Air Space Power J.,2005,19(4):39-50.

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