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Uncertainty estimates of remote sensing reflectance derived from comparison of ocean color satellite data sets

机译:通过比较海洋彩色卫星数据集得出的遥感反射率的不确定度估计

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摘要

Assigning uncertainty to ocean-color satellite products is a requirement to allow informed use of these data. Here, uncertainty estimates are derived using the comparison on a 12th-degree grid of coincident daily records of the remote-sensing reflectance RRS obtained with the same processing chain from three satellite missions, MERIS, MODIS and SeaWiFS. The approach is spatially resolved and produces σ, the part of the RRS uncertainty budget associated with random effects. The global average of σ decreases with wavelength from approximately 0.7-0.9 10-3 sr-1 at 412 nm to 0.05-0.1 10-3 sr-1 at the red band, with uncertainties on σ evaluated as 20-30% between 412 and 555 nm, and 30-40% at 670 nm. The distribution of σ shows a restricted spatial variability and small variations with season, which makes the multi-annual global distribution of σ an estimate applicable to all retrievals of the considered missions. The comparison of σ with other uncertainty estimates derived from field data or with the support of algorithms provides a consistent picture. When translated in relative terms, and assuming a relatively low bias, the distribution of σ suggests that the objective of a 5% uncertainty is fulfilled between 412 and 490 nm for oligotrophic waters (chlorophyll-a concentration below 0.1 mg m-3). This study also provides comparison statistics. Spectrally, the mean absolute relative difference between RRS from different missions shows a characteristic U-shape with both ends at blue and red wavelengths inversely related to the amplitude of RRS. On average and for the considered data sets, SeaWiFS RRS tend to be slightly higher than MODIS RRS, which in turn appear higher than MERIS RRS. Biases between mission-specific RRS may exhibit a seasonal dependence, particularly in the subtropical belt.
机译:为海洋色卫星产品分配不确定性是允许对这些数据进行知情使用的要求。在这里,不确定性估计是通过在12度网格上对来自三个卫星任务MERIS,MODIS和SeaWiFS的同一处理链获得的遥感反射率RRS的每日同步记录进行比较而得出的。该方法在空间上得到解析,并产生σ(RRS不确定性预算中与随机效应相关的部分)。 σ的整体平均值随波长从412 nm处的约0.7-0.9 10-3 sr-1减小到红带处的0.05-0.1 10-3 sr-1,在412和410之间的σ不确定度估计为20-30%。 555 nm和670 nm的30-40%。 σ的分布显示出有限的空间变异性,并且随季节变化很小,这使得σ的多年全球分布成为适用于所考虑任务的所有取回的估计。 σ与从现场数据或在算法支持下得出的其他不确定性估计值的比较提供了一致的图像。当以相对术语转换并假设相对较低的偏差时,σ的分布表明,对于营养不足的水(叶绿素-a浓度低于0.1 mg m-3),在412和490 nm之间可以实现5%不确定性的目标。该研究还提供了比较统计数据。光谱上,来自不同任务的RRS之间的平均绝对相对差显示出特征性的U形,其两端的蓝色和红色波长与RRS的幅度成反比。平均而言,对于所考虑的数据集,SeaWiFS RRS倾向于略高于MODIS RRS,而MODIS RRS则似乎高于MERIS RRS。特定于任务的RRS之间的偏差可能表现出季节依赖性,尤其是在亚热带带。

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