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An evaluation of satellite aerosol products against sunphotometer measurements

机译:针对日光计测量评估卫星气溶胶产品

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Because atmospheric aerosols scatter sunlight back to space, reflectance measurements from spaceborne radiometers can be used to estimate the aerosol load and its optical properties. Several aerosol products have been generated in a systematic way, and are available for further studies. In this paper, we evaluate the accuracy of such aerosol products derived from the measurements of POLDER, MODIS, MERIS, SEVIRI and CALIOP, through a statistical comparison with Aerosol Optical Depth (AOD) measurements from the AERONET sunphotometer network. Although this method is commonly used, this study is, to our knowledge, among the most extensive of its type since it compares the performance of the products from 5 different sensors using up to five years of data for each of them at global scale. The choice of these satellite aerosol datasets was based on their availability at the ICARE Data and Service Centre (www.icare.univ-lille1.fr).We distinguish between retrievals over land and ocean and between estimates of total and fine mode AOD. Over the oceans, POLDER and MODIS retrievals are of similar quality, with RMS difference lower than 0.1 and a correlation with AERONET of around 0.9. The POLDER estimates suffer from a small positive bias for clean atmospheres, which weakens its statistics. The other aerosol products are of lesser quality, although the SEVIRI products may be of interest for some applications that require a high temporal resolution. The MERIS product shows a very high bias. Over land, only the MODIS product offers a reliable estimate of the total AOD. On the other hand, the polarization-based retrieval using POLDER data allows a better fine mode estimate than that from MODIS. These results suggest the need for a product combining POLDER and MODIS products over land. The paper also analyses how the statistics change with the spatial and temporal thresholds that are used. Spatio-temporal averaging improves the statistics only slightly, which indicates that random errors are not dominant in the error budget. The paper includes various statistical indicators at global scale, and detailed results at individual ground stations can be obtained on request from the authors.
机译:由于大气气溶胶会将阳光散射回太空,因此可以使用星载辐射计的反射率测量来估计气溶胶负荷及其光学特性。已经以系统的方式产生了几种气雾剂产品,可供进一步研究。在本文中,我们通过与AERONET日光光度计网络中的气溶胶光学深度(AOD)测量值进行统计比较,评估了从POLDER,MODIS,MERIS,SEVIRI和CALIOP测量得出的此类气溶胶产品的准确性。尽管这种方法是常用的,但据我们所知,这项研究属于同类研究中最广泛的一种,因为它使用5种不同传感器的产品性能进行了比较,并使用了全球每种传感器长达五年的数据。这些卫星气溶胶数据集的选择取决于ICARE数据和服务中心(www.icare.univ-lille1.fr)的可用性。我们区分陆地和海洋的检索以及总和精细模式AOD的估计。在海洋上,POLDER和MODIS的检索质量相似,RMS差小于0.1,与AERONET的相关性约为0.9。 POLDER的估算值对清洁大气有较小的正偏差,这削弱了其统计数据。尽管SEVIRI产品可能对某些需要高时间分辨率的应用感兴趣,但其他气雾剂产品的质量较低。 MERIS产品显示出很高的偏差。在陆地上,只有MODIS产品可以提供可靠的总AOD估算值。另一方面,使用POLDER数据进行的基于极化的检索比来自MODIS的精细模式估计更好。这些结果表明需要在陆地上结合POLDER和MODIS产品的产品。本文还分析了统计信息如何随所使用的空间和时间阈值而变化。时空平均只能稍微改善统计量,这表明随机误差在误差预算中并不占主导地位。本文包括全球范围内的各种统计指标,并可应作者的要求获得各个地面站的详细结果。

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