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The MODIS (Collection V005) BRDF/albedo product: Assessment of spatial representativeness over forested landscapes

机译:mODIs(收集V005)BRDF /反照率产品:评估森林景观的空间代表性

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摘要

A new methodology for establishing the spatial representativeness of tower albedo measurements that are routinely used in validation of satellite retrievals from global land surface albedo and reflectance anisotropy products is presented. This method brings together knowledge of the intrinsic biophysical properties of a measurement site, and the surrounding landscape to produce a number of geostatistical attributes that describe the overall variability, spatial extent, strength of the spatial correlation, and spatial structure of surface albedo patterns at separate seasonal periods throughout the year. Variogram functions extracted from Enhanced Thematic Mapper Plus (ETM+) retrievals of surface albedo using multiple spatial and temporal thresholds were used to assess the degree to which a given point (tower) measurement is able to capture the intrinsic variability of the immediate landscape extending to a satellite pixel. A validation scheme was implemented over a wide range of forested landscapes, looking at both deciduous and coniferous sites, from tropical to boreal ecosystems. The experiment focused on comparisons between tower measurements of surface albedo acquired at local solar noon and matching retrievals from the MODerate Resolution Imaging Spectroradiometer (MODIS) (Collection V005) Bidirectional Reflectance Distribution Function (BRDF)/albedo algorithm. Assessments over a select group of field stations with comparable landscape features and daily retrieval scenarios further demonstrate the ability of this technique to identify measurement sites that contain the intrinsic spatial and seasonal features of surface albedo over sufficiently large enough footprints for use in modeling and remote sensing studies. This approach, therefore, improves our understanding of product uncertainty both in terms of the representativeness of the field data and its relationship to the larger satellite pixel.
机译:提出了一种建立塔式反照率测量的空间代表性的新方法,该方法通常用于验证从全球陆面反照率和反射率各向异性产品中获取的卫星。此方法将测量站点的固有生物物理特性和周围景观的知识汇集在一起​​,以生成许多地统计学属性,这些属性描述了整体变异性,空间范围,空间相关强度以及单独的表面反照率模式的空间结构一年四季。使用多个空间和时间阈值从增强的专题映射器Plus(ETM +)检索的地表反照率中提取的方差图函数用于评估给定点(塔)测量值能够捕获扩展到地形的直接景观的内在变化的程度。卫星像素。在从热带到北方生态系统的落叶林和针叶林中,对各种森林景观实施了验证方案。实验着重比较了当地太阳正午获取的地表反照率的塔测量值与现代分辨率成像光谱仪(MODIS)(集合V005)双向反射率分布函数(BRDF)/反照率算法的匹配检索结果之间的比较。对一组具有类似地形特征和日常取回情况的现场站进行的评估进一步证明了该技术能够识别出测量地盘的能力,这些测量点在足够大的覆盖区中包含地表反照率的固有空间和季节特征,可用于建模和遥感学习。因此,这种方法从现场数据的代表性及其与较大卫星像素的关系方面提高了我们对产品不确定性的理解。

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