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An application of airborne hyperspectral and EO-1 Hyperion data for inter-sensor calibration of vegetation indices for regional-scale monitoring

机译:用于区域规模监测植被指数的传感器间校准的机载高光谱和EO-1 Hyperion数据的应用

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In order to use satellite data from multiple sensors for monitoring of the Earth's vegetation, satellite data product continuity and compatibility need to be investigated. In this study, we assessed inter-sensor compatibility of the normalized difference vegetation index (NDVI) by simulating bandpasses of the NOAA-14 AVHRR, Terra-MODIS, and Landsat-7 ETM+ from airborne hyperspectral and EO-1 Hyperion data acquired over a savanna-forest transitional zone in Brazil. Our results showed that the simulated reflectances among the sensors examined here were near-linearly related, but with relationships that were land cover-dependent, e.g., reflectances over green vegetation targets formed separate relationships. The deviations were larger for greener targets. On the other hand, the NDVI crossplots among the sensors formed single, land-cover independent relationships. They were, however, curve-linearly related with the degree of curve-linearity increasing with atmosphere cont2mination. Also, land cover dependencies appeared in the NDVI cross-plots when contaminated by atmosphere. These results suggest that inter-sensor calibration and continuity of the NDVI are achievable, but require a careful examination of surface and atmospheric conditions and the development of a theoretical basis.
机译:为了使用来自多个传感器的卫星数据,以监测地球植被,需要调查卫星数据产品连续性和兼容性。在这项研究中,我们通过从空气传播的高光谱和eo-1 Hyperion数据中模拟NOAA-14 AVHRR,Terra-Modis和Landsat-7 ETM +的带通和RANDSAT-7 ETM +的归一化差异植被指数(NDVI)的传感器间兼容性。巴西的大草原森林过渡区。我们的研究结果表明,这里检查的传感器之间的模拟反射近在线性相关,但是具有陆地覆盖的关系,例如陆地覆盖,例如,绿色植被目标形成单独的关系。对于更环保的目标,偏差更大。另一方面,传感器中的NDVI交叉点形成单个,陆地覆盖独立关系。然而,它们与随着大气连续的曲线线性程度增加的曲线线性相关。此外,在受大气污染时,土地覆盖依赖关系出现在NDVI交叉图中。这些结果表明,NDVI的传感器校准和连续性是可实现的,但需要仔细检查表面和大气条件以及理论基础的发展。

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