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首页> 外文期刊>Journal of Applied Remote Sensing >Derivation of a MODIS-compatible enhanced vegetation index from visible infrared imaging radiometer suite spectral reflectances using vegetation isoline equations
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Derivation of a MODIS-compatible enhanced vegetation index from visible infrared imaging radiometer suite spectral reflectances using vegetation isoline equations

机译:使用植被等值线方程从可见红外成像辐射计套件的光谱反射率推导与MODIS兼容的增强植被指数

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摘要

We developed a unique methodology that spectrally translates the enhanced vegetation index (EVI) across sensors for data continuity based on vegetation isoline equations and derived a moderate resolution imaging spectroradiometer (MODIS)-compatible EVI for the visible/ infrared imager/radiometer suite (VIIRS) sensor. The derived equation had four coefficients that were a function of soil, canopy, and atmosphere, e.g., soil line slope, leaf area index (LAI), and aerosol optical thickness (AOT). The PROSAIL canopy reflectance and 6S atmospheric models were employed to numerically characterize the MODIS-compatible VIIRS EVI. MODIS-compatible VIIRS EVI values only differed from those of MODIS EVI by, at most, 0.002 EVI units, whereas VIIRS and MODIS EVI values differed by 0.018 EVI units. The derived coefficients were sensitive mainly to LAI and AOT for the full- and a partial-covered canopy, respectively. The MODIS-compatible EVI resulted in a reasonable level of accuracy when the coefficients were fixed at values found via optimization for model-simulated and actual sensor data (83 and 41% reduction in the root mean square error, respectively), demonstrating the potential practical utility of the derived equation. The developed methodology can be used to obtain a spectrally compatible EVI for any pair of sensors in the data continuity context.
机译:我们开发了一种独特的方法,该方法可基于植被等值线方程对传感器之间的增强植被指数(EVI)进行光谱转换,以实现数据连续性,并为可见/红外成像仪/辐射仪套件(VIIRS)导出了兼容中分辨率成像光谱仪(MODIS)的EVI传感器。导出的方程具有四个系数,它们是土壤,冠层和大气的函数,例如土壤线坡度,叶面积指数(LAI)和气溶胶光学厚度(AOT)。使用PROSAIL冠层反射率和6S大气模型对MODIS兼容VIIRS EVI进行了数值表征。兼容MODIS的VIIRS EVI值与MODIS EVI的差异最多为0.002 EVI单位,而VIIRS和MODIS EVI的数值相差0.018 EVI单位。对于全部和部分覆盖的冠层,得出的系数主要对LAI和AOT敏感。当将系数固定为通过优化模型仿真和实际传感器数据找到的值时,与MODIS兼容的EVI产生了合理的精度水平(均方根误差分别减少了83%和41%),表明了潜在的实用性推导方程的效用。所开发的方法可用于在数据连续性上下文中为任何一对传感器获得光谱兼容的EVI。

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