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星载寄生式SAR多普勒特性分析 被引量:6

Doppler Property Analysis of Spaceborne Parasitic SAR
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摘要 本文基于星载双基地雷达空间几何关系,给出了星载寄生式SAR系统中小卫星多普勒参数的两种表达形式,进一步给出了与多普勒特性相关的几个重要系统参数的表达式。分析了基线和相对速度对小卫星多普勒特性参数偏移主星参数的影响,指出基线是主要影响因素;对多普勒中心频率影响大,对多普勒调频斜率及方位分辨率影响小。分析了利用寄生式SAR提高方位分辨率的能力和限制因素。 Based on geometric relationship among satellites, the Earth and radar, expressions of two Doppler parameters of SAR radar onboard small satellites of spaceborne parasitic SAR system are given in two different forms. From the results, expressions of several other important system parameters related to Doppler property are also given. Influences of baseline and relative velocity on these parameters are analyzed. Its found that baseline extent is the main influence. Doppler centric frequency is influenced much greater than Doppler FM rate and azimuth resolution is. Capability and limitation of improving azimuth resolution by combining the data obtained by different small satellites are analyzed too.
出处 《信号处理》 CSCD 2004年第5期475-480,469,共7页 Journal of Signal Processing
基金 国家973计划项目
关键词 多普勒特性 SAR 星载 方位分辨率 多普勒调频斜率 双基地雷达 多普勒中心频率 影响 分析 寄生 spaceborne parasitic SAR bistatic SAR doppler parameter azimuth resolution
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参考文献6

  • 1D.Massonnet, Capabilities and Limitations of the Intefferometric Cartwheel, IEEE Trans.Geosci.Remote Sensing, Vol.39, No.3, 2001.
  • 2G..Krieger, M.Wendler, Comparison of the Interferometric Performance for Spaceborne Parasitic SAR Configurations, EUSAR 2002.
  • 3John C.Curlander and Robert N.McDonough, Synthetic Aperture Radar. Systems and Signal Processing,New York:Wiley,1991, appendix B.
  • 4Barber, B.C, Theory of digital imaging from orbit synthetic-aperture radar, Int.J.Remote Sencing,Vol.6,No.7.
  • 5R.K.Raney, Doppler properties of radars in circular orbits, Ine.J.Remote Sensing, Vol.7, No.9.
  • 6C.Jakowatz, D.Wahl, Spotlight-Mode SAR:A Signal Processing Approach. Boston, MA:Kluwer, 1996.

同被引文献42

  • 1刘建平,梁甸农,何峰.主星带伴随微小卫星编队SAR系统的模糊性分析[J].系统工程与电子技术,2004,26(10):1429-1431. 被引量:2
  • 2刘建平,梁甸农,何峰.基于主星带伴随小卫星编队系统的AT-INSAR研究[J].宇航学报,2005,26(2):186-190. 被引量:3
  • 3何峰,梁甸农.用星载寄生式SAR提高空间二维分辨率的信号处理[J].电子学报,2005,33(6):1128-1131. 被引量:1
  • 4何峰,梁甸农,董臻.星载双基地SAR系统模糊性[J].国防科技大学学报,2006,28(2):80-84. 被引量:3
  • 5Massonnet D. Capabilities and Limitations of the Interferometric Cartwheel[J]. IEEE Trans. on Geoscience and Remote Sensing, 2001, 39(3 ): 506-520.
  • 6Krieger G, Wendler M. Comparison of the Interferometric Performance for Spaceborne Parasitic SAR Configurations[A]. In EUSAR 2002[C],Berlin: VDE VER LAG GMBH, 2002:467-470.
  • 7Rosen P A, et al. Synthetic Aperture Radar Interferometry[J]. Proceedings of the IEEE, 2000,88(3):333-382.
  • 8Rodríguez E,Martin J M. Theory and Design of Interferometric Synthetic -aperture Radars[J]. IEEE Proceedings-F, 1992, 139(2):147-159.
  • 9D.Massonnet, Capabilities and Limitations of the Interferometric Cartwheel, IEEE Trans.Geosci.Remote Sensing, Vol.39, No.3, pp.506-520. 2001.
  • 10G..Krieger, M.Wendler, Comparison of the Interferometric Performance for Spaceborne Parasitic SAR Configurations, EUSAR 2002, 4-6 June 2002,Cologne, Germany. pp.467-470.

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