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利用MODIS数据反演植被指数的敏感性研究
引用本文:张婕,张武,陈权亮. 利用MODIS数据反演植被指数的敏感性研究[J]. 西南大学学报(自然科学版), 2011, 33(11)
作者姓名:张婕  张武  陈权亮
作者单位:成都信息工程学院大气科学学院高原大气与环境四川省重点实验室;兰州大学大气科学学院;
基金项目:成都信息工程学院自然科学发展基金资助项目(CSRF20102)
摘    要:根据Kaufman等提出的暗像元法,通过6S辐射传输模式,对MODIS的红光、蓝光、近红外通道辐射特性进行了敏感性实验.结果表明:三个通道的行星反射率对地表反射率都非常敏感,行星反射率随地表反射率的增加而增加.进一步提出了对地表反射率进行大气订正的思路,讨论了暗像元法确定地表反射率误差对大气气溶胶光学厚度反演结果的影响.最后计算分析了光学厚度反演误差对地表反射率大气订正传递误差的大小及其对NDVI、SAVI、ARVI和EVI 4种植被指数计算结果的影响.光学厚度误差对植被指数反演误差的影响以ARVI最为敏感,其误差范围与气溶胶光学厚度误差可达同一量级,两者呈负相关;NDVI与SAVI误差变化范围大致相近,与光学厚度误差均呈负相关.EVI受气溶胶光学厚度误差影响最小.

关 键 词:卫星遥感  MODIS  地表反射率  植被指数  气溶胶光学厚度  

Numerical Experiment Study on the Sensitivity of Vegetation Indices from MODIS Data
ZHANG Jie,ZHANG Wu,CHEN Quan-liang .College of Atmospheric Sciences,Chengdu University of Information Technology,Plateau Atmosphere , Environment Key Laboratory of Sichuan Province,Chengdu ,China,.College of Atmospheric Sciences,Lanzhou University,Lanzhou. Numerical Experiment Study on the Sensitivity of Vegetation Indices from MODIS Data[J]. Journal of southwest university (Natural science edition), 2011, 33(11)
Authors:ZHANG Jie  ZHANG Wu  CHEN Quan-liang .College of Atmospheric Sciences  Chengdu University of Information Technology  Plateau Atmosphere    Environment Key Laboratory of Sichuan Province  Chengdu   China  .College of Atmospheric Sciences  Lanzhou University  Lanzhou
Affiliation:ZHANG Jie1,ZHANG Wu2,CHEN Quan-liang1 1.College of Atmospheric Sciences,Chengdu University of Information Technology,Plateau Atmosphere and Environment Key Laboratory of Sichuan Province,Chengdu 610225,China,2.College of Atmospheric Sciences,Lanzhou University,Lanzhou 730000
Abstract:Based on the 6S radiative transfer model,the dark target(DT) method proposed by Kaufman was used to study the sensitivity of aerosol optical depth to the planetary albedo of three channels(blue,red,mid-infrared) of MODIS.The numerical experiment results showed that the planetary albedo of the three channels was highly sensitive to the surface albedo and increased linearly with increasing surface albedo.The impact of the surface albedo error due to the DT approach on the aerosol optical properties was studie...
Keywords:satellite remote sensing  MODIS  surface albedo  vegetation index  aerosol optical depth  
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