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Evaluation of ocean color data processing schemes for VIIRS sensor using in-situ data of coastal AERONET-OC sites

机译:利用沿海AERONET-OC站点的原位数据评估VIIRS传感器的海洋颜色数据处理方案

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In the processing of Ocean Color (OC) data from sensor data recorded by Visible Infrared Imaging Radiometer Suite (VIIRS) aboard JPSS-Suomi satellite, NASA Ocean Biology Processing Group (OBPG) is deriving a continuous temporal calibration based on the on-board calibration measurements for the visible bands, and then reprocessing the full mission to produce a continuously calibrated sensor data record (SDR) product. In addition, a vicarious calibration during SDR to OC Level-2 processing is applied. In the latest processing the vicarious calibration is derived from the Marine Optical Buoy (MOBY) data, whereas in the initial processing it was derived from a sea surface reflectance model and a climatology of chlorophyll-a concentration. Furthermore, NASA has recently reprocessed the OC data for the entire VIIRS mission with lunar-based temporal calibration and updated vicarious gains. On the other hand, in fulfilling the mission of the U.S. National Oceanic and Atmospheric Administration (NOAA), the Interface Data Processing Segment (IDPS) developed by Raytheon Intelligence and Information Systems, for the processing of the environmental data products from sensor data records, has gained beta status for evaluation. As these processing schemes continue to evolve, monitoring the validity and assessments of the related VIIRS ocean color products are necessary, especially for coastal waters, to evaluate the consistency of these processing and calibration schemes. The ocean color component of the Aerosol Robotic Network (AERONET-OC) has been designed to support long-term satellite ocean color investigations through cross-site measurements collected by autonomous multispectral radiometer systems deployed above water. As part of this network, the Long Island Sound Coastal Observatory (LISCO) near New York City and WaveCIS in the Gulf of Mexico expand those observational capabilities with continuous monitoring as well as (for the LISCO site) additional assessment of the hyper-spectral properties of coastal waters. In the investigations carried out over a one and half year period dataset of VIIRS, based on the data from two coastal AERONET-OC sites, it has been observed that the VIIRS sensor captures well the seasonal and temporal variations in the nLw data, exhibiting significant correlation with in-situ data (R = 0.929 and 0.985 for LISCO and WaveCIS respectively). For the WaveCIS site, VIIRS nLw data retrievals are seen to be enhanced with each incremental adjustments of vicarious and calibration procedures. However, that is not the case for the LISCO site which exhibits more frequent occurrences of negative water-leaving radiances, while underestimation in VIIRS nLw data is further exacerbated. Strong consistency between the time-series nLw data retrieved from the VIIRS and MODIS sensors was also observed.
机译:在处理由JPSS-Suomi卫星上的可见红外成像辐射计套件(VIIRS)记录的传感器数据中的海洋颜色(OC)数据时,NASA海洋生物处理组(OBPG)正在基于机载校准进行连续的时间校准测量可见波段,然后重新处理整个任务,以产生连续校准的传感器数据记录(SDR)产品。此外,在从SDR到OC Level-2的处理过程中进行了替代校准。在最新的处理中,替代标定是从海洋光学浮标(MOBY)数据得出的,而在初始处理中,它是从海面反射率模型和叶绿素a浓度的气候学得出的。此外,NASA最近通过基于月球的时间校准和更新的替代物,重新处理了整个VIIRS任务的OC数据。另一方面,为了完成美国国家海洋与大气管理局(NOAA)的任务,由雷神情报与信息系统公司(Raytheon Intelligence and Information Systems)开发的接口数据处理分部(IDPS),用于处理传感器数据记录中的环境数据产品,已获得Beta状态以进行评估。随着这些处理方案的不断发展,有必要监测相关VIIRS海洋色彩产品的有效性和评估,尤其是对于沿海水域,以评估这些处理和校准方案的一致性。气溶胶机器人网络(AERONET-OC)的海洋颜色组件旨在通过部署在水上的自主多光谱辐射仪系统收集的跨站点测量结果,支持长期的卫星海洋颜色调查。作为该网络的一部分,纽约市附近的长岛声音海岸天文台(LISCO)和墨西哥湾的WaveCIS通过不断监测以及(对于LISCO站点)对高光谱特性的附加评估扩展了这些观测能力。沿海水域。在对VIIRS数据进行为期一年半的调查中,基于来自两个沿海AERONET-OC站点的数据,已观察到VIIRS传感器很好地捕获了nLw数据的季节和时间变化,显示出与现场数据的相关性(LISCO和WaveCIS的R分别为0.929和0.985)。对于WaveCIS站点,随着替代和校准程序的每次增量调整,VIIRS nLw数据检索都得到了增强。但是,LISCO站点并非如此,因为该站点更经常出现负含水辐射率,而VIIRS nLw数据中的低估会进一步加剧。还观察到从VIIRS和MODIS传感器检索到的时间序列nLw数据之间的强一致性。

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