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Normalization of the directional effects in NOAA-AVHRR reflectance measurements for an improved monitoring of vegetation cycles

机译:标准化NOAA-AVHRR反射率测量中的方向效应,以改善对植被周期的监测

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This paper describes a correction of directional effects in AVHRR reflectance time series. The method relies on a priori directional signatures, in the red and near infrared, for various surface covers. The reflectance normalization is applied to the historical Pathfinder AVHRR Land (PAL) data set acquired between 1981 and 1999. The high frequency variability in the reflectance time series, which is interpreted as a noise due to varying observation geometry and directional effects, is reduced by a factor greater than 1.7 for most vegetated surfaces. For the analysis of the vegetation annual cycle and its inter-annual variations, we recommend the use of the Difference Vegetation Index (DVI), following a prior correction of the directional effects, instead of the commonly used NDVI. Indeed, DVI appears more robust than NDVI to noise resulting from atmospheric perturbations, which makes it a good candidate for long-term ecological surveys and climate change studies. (c) 2006 Elsevier Inc. All rights reserved.
机译:本文介绍了AVHRR反射时间序列中方向效应的校正。该方法依赖于红色和近红外的先验方向标记,用于各种表面覆盖。将反射率归一化应用于1981年至1999年之间获取的历史探路者AVHRR Land(PAL)数据集。反射率时间序列中的高频可变性(被解释为由于观察几何形状和方向效应的变化而引起的噪声)可减少大多数植被表面的系数大于1.7。为了分析植被的年周期及其年际变化,建议在事先校正方向效应后使用差异植被指数(DVI),而不是通常使用的NDVI。确实,DVI对于大气扰动产生的噪声似乎比NDVI更强健,这使其成为长期生态调查和气候变化研究的理想选择。 (c)2006 Elsevier Inc.保留所有权利。

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