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Validation of VIIRS AOD through a Comparison with a Sun Photometer and MODIS AODs over Wuhan

机译:通过与武汉市太阳光度计和MODIS AOD的比较来验证VIIRS AOD

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Visible Infrared Imaging Radiometer Suite (VIIRS) is a next-generation polar-orbiting operational environmental sensor with a capability for global aerosol observations. A comprehensive validation of VIIRS products is significant for improving product quality, assessing environment quality for human life, and studying regional climate change. In this study, three-year (from 1 January 2014 to 31 December 2016) records of VIIRS Intermediate Product (IP) data and Moderate Resolution Imaging Spectroradiometer (MODIS) retrievals on aerosol optical depth (AOD) at 550 nm were evaluated by comparing them to ground sun photometer measurements over Wuhan. Results indicated that VIIRS IP retrievals were underestimated by 5% for the city. A comparison of VIIRS IP retrievals and ground sun photometer measurements showed a lower R 2 of 0.55 (0.79 for Terra-MODIS and 0.76 for Aqua-MODIS), with only 52% of retrievals falling within the expected error range established by MODIS over land (i.e., ±(0.05 + 0.15AOD)). Bias analyses with different ?ngstr?m exponents (AE) demonstrated that land aerosol model selection of the VIIRS retrieval over Wuhan was appropriate. However, the larger standard deviations (i.e., uncertainty) of VIIRS AODs than MODIS AODs could be attributed to the less robust retrieval algorithm. Monthly variations displayed largely underestimated AODs of VIIRS in winter, which could be caused by a large positive bias in surface reflectance estimation due to the sparse vegetation and greater surface brightness of Wuhan in this season. The spatial distribution of VIIRS and MODIS AOD observations revealed that the VIIRS IP AODs over high-pollution areas (AOD > 0.8) with sparse vegetation were underestimated by more than 20% in Wuhan, and 40% in several regions. Analysis of several clear rural areas (AOD < 0.2) with native vegetation indicated an overestimation of about 20% in the northeastern region of the city. These findings showed that the VIIRS IP AOD at 550 nm can provide a solid dataset with a high resolution (750 m) for quantitative scientific investigations and environmental monitoring over Wuhan. However, the performance of dark target algorithms in VIIRS was associated with aerosol types and ground vegetation conditions.
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。 VIIRS产品的全面验证对于提高产品质量,评估人类生活的环境质量以及研究区域气候变化具有重要意义。在这项研究中,通过比较它们,评估了VIIRS中间产品(IP)数据和中分辨率成像光谱仪(MODIS)在550 nm气溶胶光学深度(AOD)上的三年(2014年1月1日至2016年12月31日)记录。武汉的地面太阳光度计测量。结果表明,该市的VIIRS IP检索量被低估了5%。 VIIRS IP取回和地面太阳光度计测量结果的比较显示,R 2较低,为0.55(Terra-MODIS为0.79,Aqua-MODIS为0.76),只有52%的取回落在MODIS所确定的陆地预期误差范围内(即±(0.05 + 0.15AOD))。用不同的指数指数(AE)进行的偏倚分析表明,武汉市进行VIIRS检索的陆地气溶胶模型选择是合适的。但是,VIIRS AOD的标准偏差(即不确定性)比MODIS AOD更大,可以归因于鲁棒性较低的检索算法。冬季的月度变化显示VIIRS的AOD值被大大低估了,这可能是由于该季节武汉植被稀疏和地表亮度较高而导致表面反射率估计值存在较大的正偏差。 VIIRS和MODIS AOD观测值的空间分布表明,植被稀疏的高污染地区(AOD> 0.8)上的VIIRS IP AOD值在武汉被低估了20%以上,在一些地区被低估了40%。对几个自然植被清晰的农村地区(AOD <0.2)进行的分析表明,该市东北地区的高估率约为20%。这些发现表明,在550 nm处的VIIRS IP AOD可以为武汉市的定量科学调查和环境监测提供高分辨率(750 m)的可靠数据集。但是,VIIRS中暗目标算法的性能与气溶胶类型和地面植被状况有关。

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