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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Albedo and reflectance anisotropy retrieval from AVHRR operated onboard NOAA and MetOp satellites: Algorithm performance and accuracy assessment for Europe
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Albedo and reflectance anisotropy retrieval from AVHRR operated onboard NOAA and MetOp satellites: Algorithm performance and accuracy assessment for Europe

机译:从NOAA和MetOp卫星上运行的AVHRR进行反照率和反射率各向异性检索:欧洲的算法性能和准确性评估

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摘要

In this study, the land surface albedo together with its Bidirectional Reflectance Distribution Function (BRDF) are retrieved for the years 2000 to 2012 from Local Area Coverage (LAC) surface reflectance data gathered by the Advanced Very High Resolution Radiometer (AVHRR) over Europe. For the retrieval the MODerate resolution Imaging Spectroradiometer (MODIS) BRDF/albedo processing scheme is employed. The comparatively high revisit frequency and high variability in angular sampling of the AVHRR sensors operated simultaneously onboard the different National Oceanic and Atmospheric Administration (NOAA) and Meteorological Operational (MetOp) satellites contribute substantially to the success and quality of BRDF retrieval. The performance of the BRDF model for AVHRR data is assessed by comparison to MODIS BRDF retrievals, and the AVHRR BRDF reflectance data is validated against BRDF reflectance data from MODIS and in situ data gathered at three field sites in Switzerland. The comparison shows that the AVHRR BRDF retrievals are of high quality across most of Europe. The higher angular sampling of AVHRR allows for more full model retrievals of best quality and generates less fill values compared to MODIS. For most of the years investigated, the absolute accuracy of the AVHRR albedos is found to be within 0.05 throughout the complete seasonal cycle with a minimum bias at the peak of the growing season. However, they systematically underestimate the field-measured albedos, predominantly in winter due to spatial scale mismatch in combination with site heterogeneity and because the expression for the calculation of satellite-based blue-sky albedo does not account for multiple scattering. A slightly increased underestimation also occurs during vegetation senescence, presumably because of the narrow to broadband conversion employing only two bands. Overall, the results confirm the potential of AVHRR to produce multi-decadal data sets of reflectance anisotropy and albedo for use in climate monitoring and modeling studies. This offers a promising and unique opportunity to produce a BRDF/albedo climate data record from AVHRR dating back to 1985. (C) 2015 Elsevier Inc All rights reserved.
机译:在这项研究中,从欧洲的超高分辨率高分辨率辐射计(AVHRR)收集的本地覆盖率(LAC)表面反射率数据中检索了2000年至2012年的陆地表面反照率及其双向反射率分布函数(BRDF)。为了检索,采用了中等分辨率成像光谱仪(MODIS)BRDF /反照率处理方案。在不同的国家海洋和大气管理局(NOAA)和气象业务(MetOp)卫星上同时运行的AVHRR传感器的相对较高的重访频率和角度采样中的高可变性,极大地促进了BRDF检索的成功和质量。通过与MODIS BRDF检索进行比较,评估了用于AVHRR数据的BRDF模型的性能,并针对来自MODIS的BRDF反射数据和在瑞士三个现场站点收集的现场数据验证了AVHRR BRDF反射数据。比较表明,在整个欧洲大部分地区,AVHRR BRDF检索都是高质量的。与MODIS相比,AVHRR的较高角度采样可实现更完整的最佳质量模型检索,并产生较少的填充值。在大多数调查的年份中,发现AVHRR反照率的绝对精度在整个季节性周期内都在0.05以内,而在生长季节的高峰期最小偏差。但是,他们系统地低估了实地测得的反照率,主要是在冬季,这是由于空间尺度不匹配以及场地异质性所致,并且因为基于卫星的蓝天反照率的计算表达式没有考虑多重散射。植被衰老期间也会发生略微增加的低估,大概是由于仅使用两个频段的窄带到宽带转换。总的来说,这些结果证实了AVHRR可能产生反射率各向异性和反照率的多年代数据集,以用于气候监测和建模研究。这提供了一个有前途的独特机会,可以从AVHRR生成可追溯到1985年的BRDF /反照率气候数据记录。(C)2015 Elsevier Inc保留所有权利。

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