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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Evaluating MODIS, MERIS, and VEGETATION vegetation indices using in situ measurements in a semiarid environment
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Evaluating MODIS, MERIS, and VEGETATION vegetation indices using in situ measurements in a semiarid environment

机译:在半干旱环境中使用原位测量评估MODIS,MERIS和VEGETATION植被指数

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New and improved satellite sensors specially designed for vegetation monitoring have been launched in recent years; including the Moderate Resolution Imaging Spectrometer (MODIS) onboard Terra and Aqua, the Medium Resolution Imaging Spectrometer (MERIS) on the ENVISAT satellite, and VEGETATION onboard the Systeme Pour l'Observation de la Terre (SPOT) satellite. The aim of this paper is to evaluate two different vegetation indices of these new sensors; the normalized difference vegetation index (NDVI) and the enhanced vegetation index (EVI). This is done by radiometric in situ measurements covering natural grass savanna in Senegal. Variations in the dynamic range of in situ NDVI was found caused by the differences in spectral response functions, MERIS NDVI characterized by the largest dynamic range. Both daily MERIS and MODIS NDVI mirrored accurately in situ measured NDVI (MERIS r/sup 2/=0.97 and MODIS r/sup 2/=0.96). VEGETATION NDVI (only available as ten-day composites) was found to be significantly lower than MODIS NDVI due to lower VEGETATION near-infrared (NIR) reflectance values. A good agreement between the NDVI/EVI relation from satellite and from in situ measured MODIS NDVI/EVI was found. This indicates an accurate atmospheric correction of the MODIS red, NIR, and blue spectral bands, also confirmed by in situ measured reflectances. EVI is sensitive to variations in blue band reflectance, and the consistency between EVI from the different sensors is reduced when compared to NDVI due to the different atmospheric correction schemes of the blue band. Thus, it is recommended that vegetation index cross-sensor algorithms should be based on NDVI over EVI.
机译:近年来推出了专门为植被监测而设计的新型和改进的卫星传感器。包括Terra和Aqua上的中分辨率成像光谱仪(MODIS),ENVISAT卫星上的中分辨率成像光谱仪(MERIS),以及Systeme Pour l'Observation de la Terre(SPOT)卫星上的VEGETATION。本文的目的是评估这些新型传感器的两种不同的植被指数。归一化植被指数(NDVI)和增强植被指数(EVI)。这是通过对塞内加尔的天然草大草原进行辐射原位测量而完成的。发现原位NDVI动态范围的变化是由频谱响应函数的差异引起的,MERIS NDVI具有最大的动态范围。每天的MERIS和MODIS NDVI均可精确地原位反映NDVI(MERIS r / sup 2 / = 0.97和MODIS r / sup 2 / = 0.96)。由于较低的VEGETATION近红外(NIR)反射率值,发现VEGETATION NDVI(仅以十天复合材料形式提供)显着低于MODIS NDVI。发现卫星的NDVI / EVI关系与现场测量的MODIS NDVI / EVI的关系良好。这表明对MODIS红色,NIR和蓝色光谱带进行了精确的大气校正,这也通过现场测量的反射率得到了证实。 EVI对蓝带反射率的变化敏感,并且由于蓝带的大气校正方案不同,与NDVI相比,来自不同传感器的EVI之间的一致性降低了。因此,建议植被指数交叉传感器算法应基于EVI上的NDVI。

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