期刊文献+

宽波束角大测绘带UWB SAR的子孔径子带运动补偿算法 被引量:2

An Improved Sub-aperture Sub-patch Motion Compensation Algorithm for UWB SAR
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摘要 VHF/UHF波段的正侧视条带式超宽带合成孔径雷达(UWB SAR)通常具有宽方位波束角和大处理测绘带特性,这些特点造成了雷达回波相位误差的距离空变和方位空变,使得传统的运动补偿算法失效。从载机视线误差对回波相位的影响出发,推导了一种在回波距离压缩后、距离迁徙校正前的子孔径子带补偿算法。通过将距离压缩后的回波沿距离向分块,沿方位向分子孔径,并将距离向和方位向的空变误差补偿紧密结合,提高了补偿效率。计算机点目标仿真结果,验证了该算法的有效性。文中还给出了子孔径和子带的划分原则及子孔径子带补偿算法与扩展ECS算法结合的方法。 Ultra Wide-Band (UWB) Synthetic Aperture Radar (SAR) operating on UHF/VHF band with wide processing beam and wide processing swath produces space-variant phase errors and invalidate most conventional motion compensation algorithms. Based on the aircraft motion errors in line of sight (LOS) influence upon phase errors of SAR echoes, a new sub-aperture sub-patch motion compensation algorithms for real-time motion compensation is derived detailedly. The new algorithms combines second-order motion error correction caused by large swath and second-order motion error correction caused by wide beam tightly, improving computational efficiency and the compensation algorithms can be done before range cell migration correction (RCMC), which will benefit RCMC of imaging algorithm in reverse. The effect of the new compensation algorithm is validated by simulation. The division principle of sub-aperture in azimuth and sub-patch in range is discussed in this paper, and the method incorporating the compensation method into extended ECS algorithm is studied also.
出处 《宇航学报》 EI CAS CSCD 北大核心 2008年第3期1008-1014,1020,共8页 Journal of Astronautics
关键词 UWB SAR 宽波束角 大测绘带 运动补偿 子孔径 UWB SAR Wide beam Wide swath Motion compensation
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参考文献11

  • 1Soren M. Compensating for motion errors in UWB SAR data [ J ] NASA TECH BRIEF, NASA' s Jet Propulsion Labaoratory, Pasadena California, 2002. 被引量:1
  • 2郭微光..机载超宽带合成孔径雷达运动补偿技术研究[D].国防科学技术大学,2003:
  • 3Alberto Moreira, Josef Mittermayer and Rolf Scheiber. Extended chirp scaling algorithm for air and spacebere SAR data processing in stripmap and scanSAR images modes [ J ]. IEEE Trans. on GRS, Sept, 1995, 32(5): 123- 1136. 被引量:1
  • 4Fomaro G. Trajectory Deviatlons in airborne SAR Analysis and compensatlon[J]. IEEE Trans. on AES., 1999, 35(3) : 997 - 1009. 被引量:1
  • 5Potsis A, Relgber A, Mittermayer J, Moreira A and Uzunoglou N. Sub-aperture algorithm for motion compensation improvement in widebeam SAR data processing [ J ]. Electonic Letters, IEE, 2001,37 (23) : 1405 - 1406. 被引量:1
  • 6Potsis A, Reigber A, Mittermayer J, Moreira A and Uzunoglou N. Improving the fousing properties of SAR processors for wide-bandand wide-beam low frequency imaging[C]. IGARSS'01, Sydney, IEEE, 2001 : 3047 - 3049. 被引量:1
  • 7Potsis A, Reigber A, Moreira A, et al. Comparison of chirp scaling and wavenumber domain algorithms for airborne low frequency SAR data processing[J]. 2004EUSAR. 被引量:1
  • 8Waiter Carrara, Sreenidhi Tummala, Ron Goodman. Motion compensation algorithm for widebeam stripmap SAR[J]. SPIE, 1995, 2407 : 13 - 23. 被引量:1
  • 9Mittermayer J, Moreira A and Scheiber R. Reduction of phase errors arising from the approximations in the chirp scaling algorithm [ C ]. Proceedings of IGARSS'98, Seattle USA, 1998:1015 - 1019. 被引量:1
  • 10Richard Bamler. A comparison of range-doppler and wave-number domain SAR focusing algorithms[J]. IEEE Trans. on GRS, 1992, 30: 706 - 713. 被引量:1

同被引文献24

  • 1李燕平,邢孟道,保铮.结合非线性CS算法的UWB-SAR运动补偿[J].系统工程与电子技术,2007,29(4):514-519. 被引量:3
  • 2Moreira A and Huang Y H. Airborne SAR processing of highly squinted data using a chirp scaling approach with integrated motion compensation[J]. IEEE Transactions on Geoscience and Remote Sensing, 1994, 32(5): 1029-1040. 被引量:1
  • 3Fornaro G. Trajectory deviations in airborne SAR: analysis and compensation[J]. IEEE Transactions on Aerospace and Electronic Systems, 1999, 35(3): 997-1009. 被引量:1
  • 4Potsis A, Uzunoglou Reigber A, Mittermayer J, Moreira A, and N. Sub-aperture algorithm for motion compensation improvement in wide-beam SAR data processing[J]. IEEE Electronic Letters, 2001, 37(23): 1405-1406. 被引量:1
  • 5Macedo K A C and Scheiber R. Precise topography and aperture-dependent motion compensation for airborne SAR[J]. IEEE Geoscience and Remote Sensing Letters, 2005, 2(2): 172-176. 被引量:1
  • 6王亮.基于实测数据的机载超宽带合成孔径雷达信号处理技术研究[D].[博士论文],国防科学技术大学,2007. 被引量:1
  • 7Reigber A, Potsis A, and Alivizatos E, et al.. Wavenumber domain SAR focusing with integrated compensation[C]. International Geoscience and Sensing Symposium(IGARSS), Toulouse, France 1465-1467. motion Remote . 2003:. 被引量:1
  • 8Samcynski P and Kulpa K S. Coherent MapDrift technique[J]. IEEE Transactions on Geoscience and Remote Sensing, 2010, 48(3): 1505-1517. 被引量:1
  • 9Xing 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. 被引量:1
  • 10Tang Y,Xing M D,Bao Z,The polar format imaging algorithm based on double chirp-Z transforms[J].IEEE Ge-osc.ie.nce and Remote Sensing Letters,2008,5(4):610-614. 被引量:1

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