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Article

Retrieval of Reflected Shortwave Radiation at the Top of the Atmosphere Using Himawari-8/AHI Data

1
Department of Atmospheric and Environmental Sciences, Gangneung-Wonju National University, 7, Jukheon-gil, Gangneung-si, Gangwon-do 25457, Korea
2
Research Institute for Radiation-Satellite, Gangneung-Wonju National University, 7, Jukheon-gil, Gangneung-si, Gangwon-do 25457, Korea
*
Author to whom correspondence should be addressed.
Remote Sens. 2018, 10(2), 213; https://doi.org/10.3390/rs10020213
Submission received: 30 November 2017 / Revised: 8 January 2018 / Accepted: 25 January 2018 / Published: 1 February 2018
(This article belongs to the Special Issue Solar Radiation, Modelling and Remote Sensing)

Abstract

This study developed a retrieval algorithm for reflected shortwave radiation at the top of the atmosphere (RSR). This algorithm is based on Himawari-8/AHI (Advanced Himawari Imager) whose sensor characteristics and observation area are similar to the next-generation Geostationary Korea Multi-Purpose Satellite/Advanced Meteorological Imager (GK-2A/AMI). This algorithm converts the radiance into reflectance for six shortwave channels and retrieves the RSR with a regression coefficient look-up-table according to geometry of the solar-viewing (solar zenith angle, viewing zenith angle, and relative azimuth angle) and atmospheric conditions (surface type and absence/presence of clouds), and removed sun glint with high uncertainty. The regression coefficients were calculated using numerical experiments from the radiative transfer model (SBDART), and ridge regression for broadband albedo at the top of the atmosphere (TOA albedo) and narrowband reflectance considering anisotropy. The retrieved RSR were validated using Terra, Aqua, and S-NPP/CERES data on the 15th day of every month from July 2015 to February 2017. The coefficient of determination (R2) between AHI and CERES for scene analysis was higher than 0.867 and the Bias and root mean square error (RMSE) were −21.34–5.52 and 51.74–59.28 Wm−2. The R2, Bias, and RMSE for the all cases were 0.903, −2.34, and 52.12 Wm−2, respectively.
Keywords: Himawari-8/Advanced Meteorological Imager (Himawari-8/AHI); Geostationary Korea Multi-Purse Satellite/Advanced Meteorological Imager (GK-2A/AMI); broadband albedo at the top of the atmosphere (TOA albedo); reflected shortwave radiation at the top of the atmosphere (RSR); Clouds and the Earth Radiant Energy System (CERES) Himawari-8/Advanced Meteorological Imager (Himawari-8/AHI); Geostationary Korea Multi-Purse Satellite/Advanced Meteorological Imager (GK-2A/AMI); broadband albedo at the top of the atmosphere (TOA albedo); reflected shortwave radiation at the top of the atmosphere (RSR); Clouds and the Earth Radiant Energy System (CERES)
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MDPI and ACS Style

Lee, S.-H.; Kim, B.-Y.; Lee, K.-T.; Zo, I.-S.; Jung, H.-S.; Rim, S.-H. Retrieval of Reflected Shortwave Radiation at the Top of the Atmosphere Using Himawari-8/AHI Data. Remote Sens. 2018, 10, 213. https://doi.org/10.3390/rs10020213

AMA Style

Lee S-H, Kim B-Y, Lee K-T, Zo I-S, Jung H-S, Rim S-H. Retrieval of Reflected Shortwave Radiation at the Top of the Atmosphere Using Himawari-8/AHI Data. Remote Sensing. 2018; 10(2):213. https://doi.org/10.3390/rs10020213

Chicago/Turabian Style

Lee, Sang-Ho, Bu-Yo Kim, Kyu-Tae Lee, Il-Sung Zo, Hyun-Seok Jung, and Se-Hun Rim. 2018. "Retrieval of Reflected Shortwave Radiation at the Top of the Atmosphere Using Himawari-8/AHI Data" Remote Sensing 10, no. 2: 213. https://doi.org/10.3390/rs10020213

APA Style

Lee, S.-H., Kim, B.-Y., Lee, K.-T., Zo, I.-S., Jung, H.-S., & Rim, S.-H. (2018). Retrieval of Reflected Shortwave Radiation at the Top of the Atmosphere Using Himawari-8/AHI Data. Remote Sensing, 10(2), 213. https://doi.org/10.3390/rs10020213

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