JOURNAL ARTICLE

Sensitivity of canopy reflectance to biochemical and biophysical variables

Xiao YanfangDemin ZhouHuili GongWenji Zhao

Year: 2015 Journal:   National Remote Sensing Bulletin Vol: 19 (3)Pages: 368-374   Publisher: Science Press

Abstract

植被理化参数与许多有关植物物质能量交换的生态过程密切相关,定量分析植被反射光谱对理化参数的敏感性是遥感反演理化参数含量的前提。本文采用EFAST(Extended Fourier Amplitude Sensitivity Test)全局敏感性分析方法,利用PROSAIL辐射传输模型分析了冠层疏密程度对叶片生化组分含量、冠层结构以及土壤背景等多种参数敏感性的影响,并对植被理化参数反演所需先验知识的精度问题进行了初步探讨。研究表明:(1)对于较为稠密的冠层,可见光波段的冠层反射率主要受叶绿素含量的影响,近红外和中红外波段的冠层反射率主要受干物质量和含水量的影响;(2)对于稀疏的冠层,LAI是影响400—2500 nm波段范围内冠层反射率的最重要参数,土壤湿度次之,叶片生化参数对冠层反射率的敏感性较低;(3)在已知稀疏冠层LAI的情况下进一步确定土壤的干湿状态,可显著提高冠层反射率对叶绿素含量的敏感度,有助于稀疏冠层叶绿素含量的反演。

Keywords:
Sensitivity (control systems) Remote sensing Canopy Leaf area index Reflectivity Amplitude Environmental science Mathematics Fourier transform Atmospheric sciences Geology Geography Optics Physics Biology Botany Mathematical analysis

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Citation History

Topics

Free Radicals and Antioxidants
Physical Sciences →  Chemistry →  Organic Chemistry
Antioxidant Activity and Oxidative Stress
Health Sciences →  Medicine →  Biochemistry
Molecular spectroscopy and chirality
Physical Sciences →  Chemistry →  Spectroscopy
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