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Simulation and analysis of NDVI performance based on vegetation canopy radiative transfer model

机译:基于植被冠层辐射传输模型的NDVI性能仿真与分析

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This paper uses PROSAIL model to simulate vegetation canopy reflectance under different chlorophyll contents and Leaf area index (LAI). The changes of NDVIs with different LAIs and chlorophyll contents are analyzed. A simulated spectral dataset was built firstly by using PROSIAL vegetation radiative transfer model with various vegetation chlorophyll concentrations and leaf area index. The responses of NDVIs to LAIs are quantitatively analyzed further based on the dataset. The results show that chlorophyll contents affects canopy reflectance mainly in visible band. Canopy reflectance decreases with an increasing chlorophyll content. Under the same LAI value, NDVI values increase with an increase chlorophyll contents. Under constant content of chlorophyll, NDVIs increases with an increasing LAI. When the value of LAI is less than5, the canopy reflectance is significantly affected by soil background. When value of LAI is higher than5, the earth surface is almost completely covered with vegetation. The increase in LAI has little effect on canopy reflectance and NDVIs consequently. NDVIs increases with the adding of chlorophyll content, when chlorophyll is higher than 40, the rangeability of NDVIs is becoming stable.
机译:本文利用PROSAIL模型模拟了不同叶绿素含量和叶面积指数(LAI)下的植被冠层反射率。分析了不同LAI和叶绿素含量的NDVI的变化。首先利用具有不同植被叶绿素浓度和叶面积指数的PROSIAL植被辐射传输模型建立了模拟光谱数据集。基于数据集进一步定量分析了NDVI对LAI的响应。结果表明,叶绿素含量主要影响可见波段的冠层反射率。叶冠反射率随着叶绿素含量的增加而降低。在相同的LAI值下,NDVI值随着叶绿素含量的增加而增加。在恒定的叶绿素含量下,NDVIs随着LAI的增加而增加。当LAI的值小于5时,冠层反射率会受到土壤背景的显着影响。当LAI的值大于5时,地球表面几乎完全被植被覆盖。因此,LAI的增加对冠层反射率和NDVI几乎没有影响。 NDVIs随叶绿素含量的增加而增加,当叶绿素高于40时,NDVIs的可测范围变得稳定。

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