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Satellite monitoring of vegetation dynamics: Sensitivity enhancement by the wide dynamic range vegetation index

机译:植被动态的卫星监测:宽动态范围植被指数的敏感性增强

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摘要

Synoptic monitoring of vegetation dynamics relies on satellite observations of the distinctive spectral contrast between red and near infrared reflectance that photosynthetically active green vegetation exhibits. It has long been recognized that the Normalized Difference Vegetation Index (NDVI) suffers a rapid decrease of sensitivity at moderate-to-high densities of photosynthetic green biomass. This decrease can conceal detection of vegetation change in croplands, woodlands, and productive grasslands.We applied a recent, straightforward modification of the NDVI, the Wide Dynamic Range Vegetation Index (WDRVI), to a standard AVHRR dataset to assess its sensitivity to variability within ecoregions and across years, relative to NDVI. In productive ecoregions, the sensitivity increased within a single year by up to 47% and the sensitivity to interannual variability increased by up to 100%. The WDRVI exhibited no increase in sensitivity in ecoregions with sparse vegetation. These findings have significant implications for diverse applications of vegetation monitoring products.
机译:植被动态的概要监测依赖于光合作用的绿色植被展示的红色和近红外反射率的独特光谱对比的卫星观察。已经认识到,归一化差异植被指数(NDVI)在光合绿生物量的中度至高密度下敏感性迅速降低。这种减少可以隐藏农田,林地和生产性草原的植被变化。我们最近的直接改造了NDVI,宽敞的动态范围植被指数(WDRVI),标准的AVHRR数据集,以评估其对变异性的敏感性eCoregions和跨越多年,相对于NDVI。在生产性eCoregions中,灵敏度在单年内增加到47%,持续可变性的敏感度增加到100%。 WDRVI在稀疏植被中表现出良好的敏感性增加。这些发现对植被监测产品的多样化具有显着影响。

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    Andrés Viña;

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  • 年度 2004
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