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Assessment of SeaWiFS, MODIS, and MERIS ocean colour products in the South China Sea

机译:评估南海的seaWiFs,mODIs和mERIs海洋产品

摘要

The Sea-viewing Wide Field-of-view Sensor (SeaWiFS), Moderate Resolution Imaging Spectroradiometer (MODIS), and Medium Resolution Imaging Spectrometer (MERIS) remote-sensing radiometric and chlorophyll-a (chl-a) concentration products for the South China Sea (SCS) from October 2003 to May 2010 were assessed using in situ data. A strict spatiotemporal match-up method was used to minimize the temporal variability effects of atmosphere and seawater around the measurement site. A comparison of the remote-sensing reflectance (R-rs(lambda)) of the three sensors with in situ values from the open waters of the SCS showed that the mean absolute percentage difference varied from 13% to 55% in the 412-560 nm spectral range. Generally, the MERIS radiometric products exhibited higher typical uncertainties and bias than the SeaWiFS and MODIS products. The R-rs(443) to R-rs(555/551/560) band ratios of the satellite data were in good agreement with in situ observations for these sensors. The SeaWiFS, MODIS, and MERIS chl-a products overestimated in situ values by 74%, 42%, and 120%, respectively. MODIS retrieval accuracy was better than those of the other sensors, with MERIS performing the worst. When the match-up criteria were relaxed, the assessment results degraded systematically. Therefore, strict spatiotemporal match-up is recommended to minimize the possible influences of small-scale variation in geophysical properties around the measurement site. Coastal and open-sea areas in the SCS should be assessed separately because their biooptical properties are different and the results suggest different atmospheric correction problems.
机译:适用于华南地区的海景宽视场传感器(SeaWiFS),中分辨率成像光谱仪(MODIS)和中分辨率成像光谱仪(MERIS)遥感辐射测定和叶绿素a(chl-a)浓度产品使用原位数据评估了2003年10月至2010年5月的Sea(SCS)。使用严格的时空匹配方法来最小化测量地点周围大气和海水的时间变异性影响。将三个传感器的遥感反射率(R-rs(λ))与SCS的开阔水域的原位值进行比较,发现412-560中的平均绝对百分比差从13%到55%不等nm光谱范围。通常,MERIS辐射产品比SeaWiFS和MODIS产品具有更高的典型不确定性和偏差。卫星数据的R-rs(443)与R-rs(555/551/560)带宽比与这些传感器的现场观测结果非常吻合。 SeaWiFS,MODIS和MERIS chl-a产品的原位值分别高估了74%,42%和120%。 MODIS的检索精度优于其他传感器,其中MERIS表现最差。当放宽比赛标准时,评估结果会系统地下降。因此,建议进行严格的时空匹配,以最大程度地减小测量地点周围地球物理属性的小尺度变化可能产生的影响。 SCS的沿海地区和公海地区应分开评估,因为它们的生物光学特性不同,并且结果表明存在不同的大气校正问题。

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