Title
High Resolution Aerosol Optical Depth Retrieval Using Gaofen-1 WFV Camera Data.
Abstract
Aerosol Optical Depth (AOD) is crucial for urban air quality assessment. However, the frequently used moderate-resolution imaging spectroradiometer (MODIS) AOD product at 10 km resolution is too coarse to be applied in a regional-scale study. Gaofen-1 (GF-1) wide-field-of-view (WFV) camera data, with high spatial and temporal resolution, has great potential in estimation of AOD. Due to the lack of shortwave infrared (SWIR) band and complex surface reflectivity brought from high spatial resolution, it is difficult to retrieve AOD from GF-1 WFV data with traditional methods. In this paper, we propose an improved AOD retrieval algorithm for GF-1 WFV data. The retrieved AOD has a spatial resolution of 160 m and covers all land surface types. Significant improvements in the algorithm include: (1) adopting an improved clear sky composite method by using the MODIS AOD product to identify the clearest days and correct the background atmospheric effect; and (2) obtaining local aerosol models from long-term CIMEL sun-photometer measurements. Validation against MODIS AOD and ground measurements showed that the GF-1 WFV AOD has a good relationship with MODIS AOD (R-2 = 0.66; RMSE = 0.27) and ground measurements (R-2 = 0.80; RMSE = 0.25). Nevertheless, the proposed algorithm was found to overestimate AOD in some cases, which will need to be improved upon in future research.
Year
DOI
Venue
2017
10.3390/rs9010089
REMOTE SENSING
Keywords
Field
DocType
Gaofen-1,aerosol optical depth,deep blue,Wuhan,urban aerosol
Meteorology,Optical depth,Shortwave,Remote sensing,Aerosol,Sky,Spectroradiometer,Reflectivity,Geology,Image resolution,Temporal resolution
Journal
Volume
Issue
ISSN
9
1
2072-4292
Citations 
PageRank 
References 
0
0.34
4
Authors
4
Name
Order
Citations
PageRank
Kun Sun1426.57
xiaoling chen215527.17
Zhongmin Zhu333.80
Tianhao Zhang401.35