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SIR-C C波段和L波段雷达干涉数据生成DEM的比较 被引量:2

Compare of DEMs Generated from SIR-C C-band and L-band SAR Data
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摘要 为了研究波长对干涉雷达生成DEM质量的影响 ,以黑龙江省加格达齐地区为实验区 ,通过对美国航天飞机SIR C/X SARC波段和L波段雷达单视复型 (SLC)数据的处理 ,分别得到了两个不同的DEM .这两个DEM存在着一定的差异 ,通过与干涉相关性、相位解缠等干涉处理中的关键因素相结合进行的分析 ,揭示了干涉SAR技术生成DEM的精度与干涉相关性、波长的关系 ;同时 ,从另一个侧面说明了用InSAR技术生成DEM的可行性和影响因素 ;最后 ,利用 1∶5 0 0 0 0地形图对干涉SAR生成的DEM误差进行了分析 ,并分析了地形图控制点精度对干涉SAR生成DEM的影响 . SAR interferometry(InSAR) technology uses the phase information of single look complex(SLC) SAR data to get three-dimensional information of the earth surface. This technology has been in the front line of radar field since last decade. In recent years, this technology has been widely used in many remote sensing fields. To research the effect of wavelength to InSAR DEM, in the test site of Jiagedaqi district, Heilongjiang province, DEMs are generated from SIR-C/X-SAR C-band and L-band single look complex(SLC) data. There are some differences between them. Then the analysis are taken with interferometric coherence, phase unwrapping etc. So the relationships between accurate of DEM generated from InSAR and coherence, wavelength are illustrated, which also demonstrates the feasibility and affecting factor of DEM generated from InSAR. At last, 1∶50 000 topographic map is used to evaluate the accurate of DEM. The effects of ground control points'(GCP) accurate are analyzed to InSAR DEM.
出处 《中国图象图形学报(A辑)》 CSCD 北大核心 2002年第7期735-739,共5页 Journal of Image and Graphics
基金 国家 8 6 3-30 8资助项目 ( 86 3 30 8 14 )
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  • 1高殿英 等.大兴安岭东部林区森林资源[M].加格大奇:林业部大兴安岭林业管理局,1995..

同被引文献18

  • 1吴云孙,李振洪,刘经南,许才军.InSAR观测值大气改正方法的研究进展[J].武汉大学学报(信息科学版),2006,31(10):862-867. 被引量:13
  • 2国家测绘局西部测图工程项目部.国家西部1:50000地形图空白区测图工程--2007年度研究课题申请指南[EB/OL].http://www.sbsm.gov.cn/accessory/200711/1195709463533.pdf,2007-11/2009-4-8.
  • 3Rosen P A, Hensley S, Joughin I R, et al. Synthetic Aperture Radar Interferometry [ J]. Proceedings of the IEEE, 2000, 88 (3) : 333 -382.
  • 4Rosen P, Persaud P. ROI_PAC Documentation -Repeat Orbit Interferometry Package[ EB/OL]. http://shadow. eas. gatech, edu/ - anewman/classes/MGM/InSAR/ROI_PAC_doc. pdf, 2000 - 10 - 10/2009 - 04 - 08.
  • 5Crosetto M,Tscherning C C,Crippa B, et al. Subsidence Monitoring Using SAR Interferometry - reduction of the Atmospheric Effects Using Stochastic Filtering [ J ]. Geophysical Research Letters, 2002, 29(9): 261 -264.
  • 6Weydahl D J, Sagstuen J, Dick B, etal. SRTM D[M accuracy assessment over vegetated areas in Norway[J]. International Journal of Remote Sensing, 2007, 28(16). 3513-3527.
  • 7Huggel C, Schneider D, Miranda P J, et al. Evaluation of ASTER and SRTM D[M data for lahar modeling. A case study on lahars from Popocat6petl Volcano, Mexico [J]. Journal of Volcanology and Geothermal Research, 2008, 170 (1-2) 99- 110.
  • 8Fujita K, Suzuki R, Nuimura T, et al. Performance of ASTER and SRTM D[Ms, and their potential for assessing glacial lakes in the Lunana region, Bhutan Himalaya[J]. Journal of Glaciology, 2008, 54(185): 220-228.
  • 9Graham L C. Synthetic Interferometer Radar for Topographic Mapping[J]. Proceedings of the IEEE, 1974, 62(6): 763- 768.
  • 10Zebker H A, Goldstein R M. Topographic mapping from interferometric synthetic aperture radar observations[J]. J. Geophys. Res. , 1986, 91(B5). 4993-4999.

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