首页 /研究 /Multiangle implementation of atmospheric correction (MAIAC): 2. Aerosol algorithm
OTHER

Multiangle implementation of atmospheric correction (MAIAC): 2. Aerosol algorithm

Alexei Lyapustin, Yun Wang, István László, Ralph A. Kahn, Sergey Korkin, L. A. Remer, R. C. Levy, Jeffrey S. Reid

发表年份
2011
引用次数
638
访问权限
开放获取

摘要

[1] An aerosol component of a new multiangle implementation of atmospheric correction (MAIAC) algorithm is presented. MAIAC is a generic algorithm developed for the Moderate Resolution Imaging Spectroradiometer (MODIS), which performs aerosol retrievals and atmospheric correction over both dark vegetated surfaces and bright deserts based on a time series analysis and image-based processing. The MAIAC look-up tables explicitly include surface bidirectional reflectance. The aerosol algorithm derives the spectral regression coefficient (SRC) relating surface bidirectional reflectance in the blue (0.47 μm) and shortwave infrared (2.1 μm) bands; this quantity is prescribed in the MODIS operational Dark Target algorithm based on a parameterized formula. The MAIAC aerosol products include aerosol optical thickness and a fine-mode fraction at resolution of 1 km. This high resolution, required in many applications such as air quality, brings new information about aerosol sources and, potentially, their strength. AERONET validation shows that the MAIAC and MOD04 algorithms have similar accuracy over dark and vegetated surfaces and that MAIAC generally improves accuracy over brighter surfaces due to the SRC retrieval and explicit bidirectional reflectance factor characterization, as demonstrated for several U.S. West Coast AERONET sites. Due to its generic nature and developed angular correction, MAIAC performs aerosol retrievals over bright deserts, as demonstrated for the Solar Village Aerosol Robotic Network (AERONET) site in Saudi Arabia.

关键词

Atmospheric correctionAerosolAERONETRemote sensingAlgorithmEnvironmental scienceAtmospheric opticsReflectivityMeteorologyGeology

相关论文

查看 OTHER 分类全部论文