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Evaluation of VIIRS Land Aerosol Model Selection with AERONET Measurements

机译:利用AERONET测量评估VIIRS陆地气溶胶模型选择

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摘要

The Visible Infrared Imaging Radiometer Suite (VIIRS) is a next-generation polar-orbiting operational environmental sensor with a capability for global aerosol observations. Identifying land aerosol types is important because aerosol types are a basic input in retrieving aerosol optical properties for VIIRS. The VIIRS algorithm can automatically select the optimal land aerosol model by minimizing the residual between the derived and expected spectral surface reflectance. In this study, these selected VIIRS aerosol types are evaluated using collocated aerosol types obtained from the Aerosol Robotic Network (AERONET) level 1.5 from 23 January 2013 to 28 February 2017. The spatial distribution of VIIRS aerosol types and the aerosol optical depth bias (VIIRS minus AERONET) demonstrate that misidentifying VIIRS aerosol types may lead to VIIRS retrieval being overestimated over the Eastern United States and the developed regions of East Asia, as well as underestimated over Southern Africa, India, and Northeastern China. Approximately 22.33% of VIIRS aerosol types are coincident with that of AERONET. The agreements between VIIRS and AERONET for fine non-absorbing and absorbing aerosol types are approximately 36% and 57%, respectively. However, the agreement between VIIRS and AERONET is extremely low (only 3.51%). The low agreement for coarse absorbing dust may contribute to the poor performance of VIIRS retrieval under the aerosol model (R = 0.61). Results also show that an appropriate aerosol model can improve the retrieval performance of VIIRS over land, particularly for dust type (R increases from 0.61 to 0.72).
机译:可见光红外成像辐射计套件(VIIRS)是具有全球气溶胶观测功能的下一代极地轨道运行环境传感器。识别陆地气溶胶类型很重要,因为气溶胶类型是检索VIIRS气溶胶光学特性的基本输入。 VIIRS算法可以通过最小化派生和预期光谱表面反射率之间的残差来自动选择最佳的陆地气溶胶模型。在本研究中,使用从2013年1月23日至2017年2月28日从气溶胶机器人网络(AERONET)级别1.5获得的并置气溶胶类型对这些选定的VIIRS气溶胶类型进行了评估。VIIRS气溶胶类型的空间分布和气溶胶光学深度偏差(VIIRS)减去AERONET)表明,错误识别VIIRS气溶胶类型可能导致美国东部和东亚发达地区以及南部非洲,印度和中国东北地区低估了VIIRS的获取。大约22.33%的VIIRS气溶胶类型与AERONET的气溶胶类型一致。 VIIRS和AERONET之间关于精细非吸收性和吸收性气溶胶类型的协议分别约为36%和57%。但是,VIIRS与AERONET之间的协议非常低(仅为3.51%)。在气溶胶模型下,粗吸收粉尘的低一致性可能导致VIIRS检索性能差(R = 0.61)。结果还表明,合适的气溶胶模型可以改善VIIRS在陆地上的恢复性能,尤其是对于粉尘类型(R从0.61增至0.72)。

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