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《Journal of Remote Sensing》 2009-05
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Comparison between MODIS aerosol product C004 and C005 and evaluation of their applicability in the north of China

ZHOU Chun-yan1,2,LIU Qin-huo1,TANG Yong1,WANG Kai1,SUN Lin3,HE Ying-xia4 1.State Key Laboratory of Remote Sensing Science,Jointly Sponsored by the Institute of oRemote Sensing Applications of Chinese Academy of Sciences and Beijing Normal University,Beijing 100101,China;2.Satellite Environmental Application Center,Ministry of Environmental Protection of China,Beijing 100029,China;3.Geomatics College,Shandong University of Science and Technology,Shandong Qingdao 266510,China;4.LinYi Environmental Monitoring Station,Shandong Linyi 276000,China  
MODIS aerosol product Collection 005(C005) is an upgrade of C004,and is introduced in detail in this paper.Through fitting with AERONET ground observation aerosol optical thickness(AOT),MODIS aerosol C004 and C005 products of TERRA and AQUA are compared and evaluated to analyze their applicability in the north of China at Beijing and Yulin sites.We match AERONET ground-based data with MODIS aerosol product by band interpolation and temporal-spatial matching,then compare and evaluate them by linear fitting.We conceive a scale of temporal-spatial matching in the north of China considering the local aerosol movement velocity of given sites.The results show that:(1) C005 product algorithm does not improve the accuracy of AOT at Beijing site,and the accuracy drops when AOT 0.8;both C004 and C005 products do not have a significant application at Beijing site,but the C004 performs better than C005 products.(2) At Yulin site,TERRA-MODIS C004 product meets the demand,and the accuracy of AQUA-MODIS C004 product decreases.Compared with the C004 product,the accuracy of the C005 product improves greatly,and correlation coefficients between AOTs of three bands(470nm,550nm,660nm) and the AERONET ground observation data are all higher than 0.9.It could be concluded that the method of the surface reflectance determination used in the new algorithm is feasible for dark dense vegetation,but is not suitable for the bright surface.
【Fund】: 中国科学院知识创新工程重要方向性项目(编号:KZCX2-YW-313);; 国家自然科学基金重点项目(编号:40730525)~~
【CateGory Index】: X513
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