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Global statistical analysis of MISR aerosol data: a massive data product from NASA's Terra satellite

机译:MISR气溶胶数据的全球统计分析:来自NASA Terra卫星的海量数据产品

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摘要

In climate models, aerosol forcing is the major source of uncertainty in climate forcing, over the industrial period. To reduce this uncertainty, instruments on satellites have been put in place to collect global data. However, missing and noisy observations impose considerable difficulties for scientists researching the global distribution of aerosols, aerosol transportation, and comparisons between satellite observations and global-climate-model outputs. In this paper, we fit a Spatial Mixed Effects (SME) statistical model to predict the missing values, denoise the observed values, and quantify the spatial-prediction uncertainties. The computations associated with the SME model are linear scalable to the number of data points, which makes it feasible to process massive global satellite data. We apply the methodology, which is called Fixed Rank Kriging (FRK), to the level-3 Aerosol Optical Depth (AOD) dataset collected by NASA's Multi-angle Imaging SpectroRadiometer (MISR) instrument flying on the Terra satellite. Overall, our results were superior to those from non-statistical methods and, importantly, FRK has an uncertainty measure associated with it that can be used for comparisons over different regions or at different time points.
机译:在气候模型中,气溶胶强迫是整个工业时期气候强迫不确定性的主要来源。为了减少这种不确定性,已经采用了卫星仪器来收集全球数据。但是,缺少观测值和嘈杂的观测值给研究气溶胶的全球分布,气溶胶运输以及卫星观测值与全球气候模式输出之间的比较的科学家带来了很大的困难。在本文中,我们适合使用空间混合效应(SME)统计模型来预测缺失值,对观测值进行消噪并量化空间预测不确定性。与SME模型相关的计算可线性扩展到数据点的数量,这使得处理海量全球卫星数据变得可行。我们将这种方法(称为固定秩Kriging(FRK))应用于由Terra卫星上飞行的NASA多角度成像光谱辐射仪(MISR)仪器收集的3级气溶胶光学深度(AOD)数据集。总体而言,我们的结果优于非统计方法的结果,重要的是,FRK具有与之相关的不确定性度量,可用于在不同区域或不同时间点进行比较。

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