Ahn Jae-Hyun, Park Young-Je, Kim Wonkook, Lee Boram, Oh Im Sang
Opt Express. 2015 Sep 7;23(18):23236-58. doi: 10.1364/OE.23.023236.
Measurements of ocean color from Geostationary Ocean Color Imager (GOCI) with a moderate spatial resolution and a high temporal frequency demonstrate high value for a number of oceanographic applications. This study aims to propose and evaluate the calibration of GOCI as needed to achieve the level of radiometric accuracy desired for ocean color studies. Previous studies reported that the GOCI retrievals of normalized water-leaving radiances (nLw) are biased high for all visible bands due to the lack of vicarious calibration. The vicarious calibration approach described here relies on the assumed constant aerosol characteristics over the open-ocean sites to accurately estimate atmospheric radiances for the two near-infrared (NIR) bands. The vicarious calibration of visible bands is performed using in situ nLw measurements and the satellite-estimated atmospheric radiance using two NIR bands over the case-1 waters. Prior to this analysis, the in situ nLw spectra in the NIR are corrected by the spectrum optimization technique based on the NIR similarity spectrum assumption. The vicarious calibration gain factors derived for all GOCI bands (except 865nm) significantly improve agreement in retrieved remote-sensing reflectance (Rrs) relative to in situ measurements. These gain factors are independent of angular geometry and possible temporal variability. To further increase the confidence in the calibration gain factors, a large data set from shipboard measurements and AERONET-OC is used in the validation process. It is shown that the absolute percentage difference of the atmospheric correction results from the vicariously calibrated GOCI system is reduced by ~6.8%.
利用具有中等空间分辨率和高时间频率的静止海洋彩色成像仪(GOCI)进行的海洋颜色测量在许多海洋学应用中显示出很高的价值。本研究旨在根据海洋颜色研究所需的辐射精度水平,提出并评估GOCI的校准方法。先前的研究报告称,由于缺乏替代校准,GOCI对所有可见波段的归一化离水辐亮度(nLw)反演结果存在偏高偏差。这里描述的替代校准方法依赖于开阔海洋站点上假定恒定的气溶胶特性,以准确估计两个近红外(NIR)波段的大气辐亮度。利用现场nLw测量值和通过两个NIR波段在一类水体上的卫星估计大气辐亮度,对可见波段进行替代校准。在进行此分析之前,基于近红外相似光谱假设,通过光谱优化技术对近红外波段的现场nLw光谱进行校正。为所有GOCI波段(865nm除外)导出的替代校准增益因子,相对于现场测量值,显著提高了反演的遥感反射率(Rrs)的一致性。这些增益因子与角度几何形状和可能的时间变化无关。为了进一步提高对校准增益因子的信心,在验证过程中使用了来自船上测量和AERONET-OC的大量数据集。结果表明,经替代校准的GOCI系统大气校正结果的绝对百分比差异降低了约6.8%。