期刊文献+

高光谱遥感卫星技术及其地质应用 被引量:49

The hyperspectral remote sensing technology and its application
在线阅读 下载PDF
导出
摘要 在收集国内外高光谱技术发展、地质应用与研究实例资料的基础上,主要介绍了国内外高光谱地质应用的现状及其主要进展,并简要介绍了高光谱地质应用的主要技术。结合地质应用成功的实例,分析了高光谱遥感卫星技术在矿物识别与填图、岩性填图、矿产资源勘探、矿业环境监测、油气渗漏监测等地学方面的应用优势与前景,同时指出了目前高光谱遥感卫星技术地质应用存在的主要问题与发展趋势。 Based on information collected in aspect of development of hyperspectral technology, geological application and its major progress, this paper introduced the current status and major progress of this technology in and abroad, as well as its geologic application. In combination of solved examples, this paper analyzed the advantages and prospects of hyperspectral remote sensing in terms of mineral recognition and mapping, llthologic mapping, mineral resource prospecting, mining environment monitoring and leakage monitoring of oil and gas, meanwhile, it pointed out problems remained and future trend for this technology.
出处 《地质通报》 CAS CSCD 北大核心 2009年第2期270-277,共8页 Geological Bulletin of China
基金 中国地质调查局地质调查项目(编号:1212010816033)资助
关键词 高光谱 遥感技术 地质应用 进展 high spectrum remote sensing technology geological application progress
  • 相关文献

参考文献25

  • 1Bachmann C M, Dubois K, Fusina R A. Automatic detection of an invasive plant species on a barrier island in the Virginia[C]//Proc. I GARSS. Sydney, Australia, 2001.
  • 2Crawford M F. Preliminary evaluation of remote sensing data for detection of vegetation stress related to hydrocarbon microseepage: mist das field, Oregon[C]//Proceedmgs of the fifth thematic conference: remote sensing for exploration geology. Reno, Nevada, September 29-October 2, 1986:161-177.
  • 3甘甫平,王润生.高光谱遥感技术在地质领域中的应用[J].国土资源遥感,2007,19(4):57-60. 被引量:40
  • 4Clark R N. Spectroscopy of Rocks and Minerals, and Principles of Spectroscopy[C]//Manual of Remote Sensing. New York: John Wiley & Sons Inc., 1999.
  • 5Cloutis E A. Hyperspectral geological remote sensing: evaluation of analytical techniques[J]. Intenlational Journal of Remote Sensing, 1996,17 (12): 2215-2242.
  • 6Meer F V, Bakker W.Cross correlogram spectral matching:appfication to surface mineralogical mapping by using AVIRIS data from cuprite, Nevada[J].Remote Sensing of Environment, 1997,61:371-382.
  • 7Kruse F A, Lefkoff A B, Dietz J B. Expert system-based mineral mapping in northern Death Valley, Califomia/Navada using the airborne visible/infrared imaging spectrometer (AVIRIS) [J]. Remote Sensing of Environment, 1993, 44:309-336.
  • 8王晋年,郑兰芬,童庆禧.成象光谱图象光谱吸收鉴别模型与矿物填图研究[J].环境遥感,1996,11(1):20-31. 被引量:63
  • 9Clark R N, King T V V, Klejwa M, et al. High spectral resolution reflectance spectroscopy of minerals[J]. J. Geophys. Res., 1990,95: 12653-12680.
  • 10甘甫平,王润生,杨苏明.西藏Hyperion数据蚀变矿物识别初步研究[J].国土资源遥感,2002,14(4):44-50. 被引量:49

二级参考文献33

  • 1慕纪录.新疆哈密黄山铜镍矿床中浅富矿体特征及形成机制[J].矿物岩石,1996,16(1):58-67. 被引量:20
  • 2朱训 黄崇轲 芮宗瑶 等.德兴斑岩铜矿[M].北京:地质出版社,1981..
  • 3[1]Green R O, Eastwood M L, et al. Imaging spectroscopy and the airborne visible/infrared imaging spectrometer(AVIRIS)[J].Remote Sens. Environ., 1998,65:227-248.
  • 4[4]USGS,USGS Digital Spectral Library[EB/OL].http://speclab.cr.usgs.gov/spectral-lib.html
  • 5[5]Gan F, Wang R, Ma A. Spectral Identification Tree (SIT) for Mineral Extraction Using AVIRIS Data[C].Proceedings of SPIE, 2003,4897:203-210.
  • 6[6]甘甫平. 高光谱图谱信息及其应用[R].北京大学博士后出站报告,2004.
  • 7[7]Clark R N, King T V V, Klejwa M, et al. High Spectral Resolution Reflectance Spectroscopy of Minerals[J].J. Geophys Res,1990, 95, 12653-12680.
  • 8Acron[EB/OL].http://www.aigllc.com/acron/intro.asp.
  • 9Baugh W M, Kruse F A, et al. Quantitative geochemical mapping of ammonium minerals in the Southern Cedar Mountains, Nevada, using the airborne visible/infrared imaging spectrometer(AVIRIS) [J].Remote Sens. Environ.,1998, 65:292-308.
  • 10Clark N R. Spectroscopy of Rocks and Minerals, and Principles of Spectroscopy[EB/OL].http://speclab.cr.usgs.gov (last revised June 25,1999).

共引文献203

同被引文献627

引证文献49

二级引证文献229

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部