期刊文献+

基于MODIS的沙漠化地区植被覆盖度提取模型的研究 被引量:27

Model establishment of vegetation coverage extraction in sandy desertification area based on MODIS image data
在线阅读 下载PDF
导出
摘要 目前常用的植被覆盖度遥感反演模型,受限条件较多,所用系数精度不高。针对上述问题,提出了利用研究区域的实测最大和最小植被覆盖度确定反演模型系数的方法和基于MODIS影像数据的地面实测验证方法。经用该方法对毛乌素沙地沙漠化地区的植被覆盖度进行反演,并同步监测该区域的地表覆盖度对反演结果进行验证,结果表明地面同步实测植被覆盖度与反演的误差绝对值平均值为0.04,反演方法精度较高。研究表明本文提出的利用MODIS影像数据反演沙漠化地区地表覆盖度的模型、地面验证方法切实可行,适合对沙漠化地区地表植被覆盖度大范围且快速的遥感监测。 Because complex parameters of vegetation information, extracted from MODIS data, lack appropriate validation method and have low accuracy at present, a method was proposed using the maximum and the minimum vegetation coverage to determine the parameters of vegetation coverage inversion based on the MODIS data. According to the comparison between vegetation parameters extracted from MODIS data and the synchronous ground data in Mu Us sandy land, it was found that the model accuracy was pretty high, and the correlation between the extracted parameters and the ground data is significant and the correlation coefficient reached 0.93. The results shown the model introduced in this paper is suitable for vegetation coverage extraction and it could be used for vegetation dynamic monitoring in large-scale region by MODIS data.
出处 《干旱地区农业研究》 CSCD 北大核心 2008年第6期217-223,共7页 Agricultural Research in the Arid Areas
基金 中国科学院资源环境领域野外台站研究基金项目 西北农林科技大学人才基金
关键词 植被覆盖度 植被指数 遥感 vegetation information inversion NDVI MODIS data
  • 相关文献

参考文献13

  • 1唐世浩,朱启疆,周宇宇,白香花.一种简单的估算植被覆盖度和恢复背景信息的方法[J].中国图象图形学报(A辑),2003,8(11):1304-1308. 被引量:80
  • 2田静,阎雨,陈圣波.植被覆盖率的遥感研究进展[J].国土资源遥感,2004,16(1):1-5. 被引量:115
  • 3牛宝茹,刘俊蓉,王政伟.干旱区植被覆盖度提取模型的建立[J].地球信息科学,2005,7(1):84-86. 被引量:64
  • 4Graetz R D, Pech R R, Davis A W. The assessment and monitoring of sparsely vegetated rangelands using calibrated Landsat data[ J ]. International Journal of Remote Sensing, 1988,9 ( 7 ) : 1201-1222.
  • 5Dymond J R, Stephens P R, Newaome P F, et al. Percent vegetation cover of a degrading rangeland from SPOT[J]. International Journal of Remote Sensing, 1992,13 ( 11 ). 1999-2007.
  • 6Wittich K P, Hansing o. Area-averaged vegetative cover fraction estimated from satellite data[J]. International Journal of Biometereology, 1995,38(3) :209-215.
  • 7Quamby N A, Townshend J R G, Settle J, et al. Linear mixture modeling applied to AHVRR data for crop area estimation[J]. International Journal of Remote Sensing, 1992,13 (3) : 415-425.
  • 8陈晋,陈云浩,何春阳,史培军.基于土地覆盖分类的植被覆盖率估算亚像元模型与应用[J].遥感学报,2001,5(6):416-422. 被引量:270
  • 9Leprieur C, Verstraete M M, Pinty B. Evaluation of the performance of various vegetation indices to retrieve vegetation cover from AVHRR data[J]. Remote Sensing Review, 1994, (10): 265-284.
  • 10Bradley C Rundquist. The influence of canopy green vegetation fraction on spectral measurements over native tall grass prairie [J]. Remote Sensing of Environment,2002,81(1) :129-135.

二级参考文献37

  • 1覃文汉,项月琴.植被结构及太阳/观测角度对NDVI的影响[J].环境遥感,1996,11(4):285-290. 被引量:12
  • 2李双才.北京山区植被盖度变化分析.北京师范大学资料环境科学系学士论文[M].,1999..
  • 3张良培,李德仁,童庆禧,郑兰芬.鄱阳湖地区土壤、植被光谱混合模型的研究[J].测绘学报,1997,26(1):72-76. 被引量:12
  • 4Su Hong-Bo, Zhang Ren-Hua, Tang Xin-Zhai.An Alternative Method to Compute the Component Fractions in the Geometrical Optical Model: Visual Computing Method[J].IEEE Trans. Geosci. Remote Sensing,2003,1-6.
  • 5North Peter R J.Estimation of fAPAR, LAI, and vegetation fractional cover from ATSR-2 imagery[J].Remote Sensing of Environment,2002,80:114-121.
  • 6Pinter P J, Jackson R D, Idso S B.Diurnal patterns of wheat spectral reflectance[J].IEEE Trans. Geosci. Remote Sensing,1983,GE-21:156-163.
  • 7Rason K J, Daughtry C S T, Biehl L L.Sun-View angle effects on reflectance factors of corn canopies[J].Remote Sensing Environ,1985,18:147-161.
  • 8Li X, Strahler A H.Geometric-optical modeling of a conifer forest canopy[J].IEEE Trans. Geosci. Remote Sensing,1985, GE-23:705-721.
  • 9Kimes D S, Smith J A, Ranson K J.Vegetation reflectance measurements as a function of solar zenith angle[J].Photogrammetric Engineering and Remote Sensing,1980, 46:1563-1573.
  • 10Ranson K J, Craig S T Daughtry.Scene Shadow Effects on Multispectral Response[J].IEEE Trans. Geosci. Remote Sensing,1987,GE-25:502-509.

共引文献462

同被引文献398

引证文献27

二级引证文献441

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