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Validation of the MODIS bidirectional reflectance distribution function and albedo retrievals using combined observations from the aqua and terra platforms

机译:使用来自aqua和terra平台的组合观测值验证MODIS双向反射率分布函数和反照率反演

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We evaluate the performance of the MODerate Resolution Imaging Spectroradiometer (MODIS) Bidirectional Reflectance Distribution Function (BRDF)/Albedo algorithm using observations from MODIS instruments aboard NASA's Terra (EOS AM-1) and Aqua (EOS PM-1) platforms. This "combined" albedo product is evaluated against continuous field measurements from SURFace RADiation Budget Network (SURFRAD) and Atmospheric Radiation Measurement Southern Great Plains (ARM/SGP) stations, and through an internal analysis of the product's quality assurance (QA) fields. The combined product is compared to the initial MODIS albedo product, which used observations from the Terra satellite only. During the spring and summer months, the combined product showed a slight improvement over the original Terra-only albedo product, with a root mean square error (RMSE) of 0.0130 and a bias of about -0.02. As with the Terra-only product, accuracy drops during the fall and winter months at some sites. Jin et al. found that increased heterogeneity of validation sites during the fall and winter months is partially responsible for this drop in accuracy. The additional data provided by the Aqua platform changes high-quality albedo estimations only slightly, which underscores the stability of the MODIS algorithm. The most significant benefit of the combined product is a near 50% decrease in lower quality backup algorithm retrievals for the entire globe. A decrease in backup algorithm retrievals improves the overall accuracy of the MODIS albedo product, as it reduces algorithm reliance upon an a priori determination of the underlying surface anisotropy that is not entirely data derived.
机译:我们使用来自NASA的Terra(EOS AM-1)和Aqua(EOS PM-1)平台上的MODIS仪器的观测值,评估了适度分辨率成像光谱仪(MODIS)双向反射分布函数(BRDF)/ Albedo算法的性能。该“组合”反照率产品通过SURFace辐射预算网络(SURFRAD)和大平原南部大气辐射测量(ARM / SGP)站的连续野外测量,并通过对产品质量保证(QA)场的内部分析,进行了评估。将合并后的产品与最初的MODIS反照率产品进行比较,后者仅使用Terra卫星的观测值。在春季和夏季,组合产品相对于仅Terra原始反照率产品显示出轻微改善,均方根误差(RMSE)为0.0130,偏差约为-0.02。与仅使用Terra的产品一样,在某些站点的秋季和冬季,准确性会下降。 Jin等。发现在秋季和冬季,验证位点异质性的增加是造成准确性下降的部分原因。 Aqua平台提供的附加数据仅稍微改变了高质量的反照率估计,这突显了MODIS算法的稳定性。合并后的产品最显着的好处是,整个地球的低质量备份算法检索量减少了近50%。备用算法检索量的减少提高了MODIS反照率产品的整体精度,因为它减少了对不是完全由数据得出的底层表面各向异性的先验确定的算法依赖性。

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