A provisional surface reflectance (SR) product from the Advanced Himawari Imager (AHI) on-board the new generation geostationary satellite (Himawari-8) covering the period between July 2015 and December 2018 is made available to the scientific community. The Multi-Angle Implementation of Atmospheric Correction (MAIAC) algorithm is used in conjunction with time series Himawari-8 AHI observations to generate 1-km gridded and tiled land SR every 10 minutes during day time. This Himawari-8 AHI SR product includes retrieved atmospheric properties (e.g., aerosol optical depth at 0.47µm and 0.51µm), spectral surface reflectance (AHI bands 1–6), parameters of the RTLS BRDF model, and quality assurance flags. Product evaluation shows that Himawari-8...
The latest generation of geostationary satellites carry sensors such as the Advanced Baseline Imager...
Himawari-8/AHI is a new geostationary sensor that can observe the land surface with high temporal fr...
Land surface albedo is an essential parameter for monitoring global/regional climate and land surfac...
The latest generation of geostationary satellite sensors, including the GOES-16/ABI and the Himawari...
GEONEX is a processing pipeline that produces a suite of satellite land surface products using data ...
The advanced Himawari imager (AHI) aboard the Himawari-8 geostationary satellite provides high-frequ...
A novel geostationary satellite, the H8/AHI (Himawari-8/Advanced Himawari Imager), greatly improved ...
Recently, much attention has been given to using geostationary Earth orbit (GEO) meteorological sate...
© 1980-2012 IEEE. The advanced Himawari imager (AHI) aboard the Himawari-8 geostationary satellite p...
For many years, the Advanced Very High-Resolution Radiometer (AVHRR) and Moderate Resolution Imaging...
We developed land surface temperature (LST) retrieval algorithms based on the time of day and water ...
Himawari-8, a next-generation geostationary meteorological satellite, was successfully launched by t...
The new generation geostationary (GEO) remote sensors (GOES-R ABI, Himawari AHI, and FY4 AGRI) provi...
The surface reflectance, i.e., satellite derived top of atmosphere (TOA) reflectance corrected for t...
The geostationary earth orbit satellite—Himawari-8 loaded with the Advanced Himawari Imager (A...
The latest generation of geostationary satellites carry sensors such as the Advanced Baseline Imager...
Himawari-8/AHI is a new geostationary sensor that can observe the land surface with high temporal fr...
Land surface albedo is an essential parameter for monitoring global/regional climate and land surfac...
The latest generation of geostationary satellite sensors, including the GOES-16/ABI and the Himawari...
GEONEX is a processing pipeline that produces a suite of satellite land surface products using data ...
The advanced Himawari imager (AHI) aboard the Himawari-8 geostationary satellite provides high-frequ...
A novel geostationary satellite, the H8/AHI (Himawari-8/Advanced Himawari Imager), greatly improved ...
Recently, much attention has been given to using geostationary Earth orbit (GEO) meteorological sate...
© 1980-2012 IEEE. The advanced Himawari imager (AHI) aboard the Himawari-8 geostationary satellite p...
For many years, the Advanced Very High-Resolution Radiometer (AVHRR) and Moderate Resolution Imaging...
We developed land surface temperature (LST) retrieval algorithms based on the time of day and water ...
Himawari-8, a next-generation geostationary meteorological satellite, was successfully launched by t...
The new generation geostationary (GEO) remote sensors (GOES-R ABI, Himawari AHI, and FY4 AGRI) provi...
The surface reflectance, i.e., satellite derived top of atmosphere (TOA) reflectance corrected for t...
The geostationary earth orbit satellite—Himawari-8 loaded with the Advanced Himawari Imager (A...
The latest generation of geostationary satellites carry sensors such as the Advanced Baseline Imager...
Himawari-8/AHI is a new geostationary sensor that can observe the land surface with high temporal fr...
Land surface albedo is an essential parameter for monitoring global/regional climate and land surfac...