Development of the operational atmospheric correction algorithm for the COCTS2 onboard the Chinese new-generation ocean color satellite.

IF 3.3 2区 物理与天体物理 Q2 OPTICS
Optics express Pub Date : 2025-09-08 DOI:10.1364/OE.566718
Ruofeng Bai, Xianqiang He, Xiaomin Ye, Hao Li, Yan Bai, Chaofei Ma, Qingjun Song, Xuchen Jin, Xuan Zhang, Fang Gong
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引用次数: 0

Abstract

After the two operational polar-orbiting ocean color satellites HY-1C and HY-1D launched in 2018 and 2020, respectively, China launched the new-generation ocean color observation satellite (named as HY-1E or HY-3A, hereafter called HY-1E) on 16 Nov. 2023. The second-generation Chinese Ocean Color and Temperature Scanner (COCTS2), one of the major payloads onboard the HY-1E, can daily observe global ocean color and sea surface temperature. In this study, we developed operational ocean color retrieval algorithms for the HY-1E/COCTS2 and preliminarily examined their performances. Firstly, the operational atmospheric correction algorithm was established based on look-up tables generated by vector radiative transfer model for coupled ocean-atmosphere system (PCOART), and cross-calibrated by the SNPP/VIIRS-retrieved ocean color products. Then, we proposed a cross-calibration method for correcting the radiance response difference along the viewing angles, and obtained the viewing correction functions for each channel. The results showed that the determination coefficient of the linear relationship between cross-calibration simulated radiance at the top-of-atmosphere and HY-1E/COCTS2 measured radiance was larger than 0.95, indicating the good linear response of the HY-1E/COCTS2. Based on the established atmospheric correction algorithms, the HY-1E/COCTS2 data were processed to generate the daily global products of remote sensing reflectance (Rrs) and chlorophyll-a concentration (Chl) and were validated by the in-situ data and the synchronous products from Aqua/MODIS and SNPP/VIIRS. The mean absolute percentage errors referring to the in-situ data from AERONET-OC were 14.287% (412 nm), 13.341% (443 nm), 8.0623% (490 nm), 9.1882% (520 nm), 17.836% (565 nm), 58.474% (620 nm), 63.229% (665 nm) and 61.552% (681 nm), and the ocean color products derived by HY-1E/COCTS2 were consistent with the products from Aqua/MODIS and SNPP/VIIRS, indicating the good performance of HY-1E/COCTS2 to monitor global ocean color environment.

中国新一代海洋彩色卫星COCTS2运行大气校正算法的发展。
继2018年和2020年两颗在轨极轨海洋色卫星HY-1C和HY-1D发射后,中国于2023年11月16日发射了新一代海洋色观测卫星(命名为HY-1E或HY-3A,以下简称HY-1E)。第二代中国海洋颜色和温度扫描仪(COCTS2), HY-1E上的主要有效载荷之一,能每日观测全球海洋颜色和海面温度。在本研究中,我们开发了HY-1E/COCTS2的操作性海洋颜色检索算法,并对其性能进行了初步检验。首先,基于海洋-大气耦合系统矢量辐射传输模型(PCOART)生成的查表,利用SNPP/ viirs检索的海洋颜色产品进行交叉标定,建立了大气校正算法;然后,我们提出了一种校正沿视角的辐射响应差异的交叉校准方法,得到了各通道的观测校正函数。结果表明:大气顶交叉标定模拟辐亮度与HY-1E/COCTS2实测辐亮度线性关系的决定系数大于0.95,表明HY-1E/COCTS2具有良好的线性响应;基于已建立的大气校正算法,对HY-1E/COCTS2数据进行处理,生成遥感反射率(Rrs)和叶绿素-a浓度(Chl)的每日全球产品,并与Aqua/MODIS和SNPP/VIIRS的同步产品进行验证。与AERONET-OC原位数据的平均绝对百分比误差分别为14.287% (412 nm)、13.341% (443 nm)、8.0623% (490 nm)、9.1882% (520 nm)、17.836% (565 nm)、58.474% (620 nm)、63.229% (665 nm)和61.552% (681 nm), HY-1E/COCTS2与Aqua/MODIS和SNPP/VIIRS的海洋颜色产品一致,表明HY-1E/COCTS2具有良好的全球海洋颜色环境监测性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Optics express
Optics express 物理-光学
CiteScore
6.60
自引率
15.80%
发文量
5182
审稿时长
2.1 months
期刊介绍: Optics Express is the all-electronic, open access journal for optics providing rapid publication for peer-reviewed articles that emphasize scientific and technology innovations in all aspects of optics and photonics.
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