基于三种不同大气校正的Sentinel-2/Msi Level-2a影像产品对巴西马德拉河悬浮沉积物浓度监测的评价

D. R. D. Santos, J. M. Martínez, T. Harmel, H. Borges, H. Roig
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引用次数: 4

摘要

空间传感器提供的数据结合遥感技术和对水光学特性的分析,可以绘制水体中悬浮沉积物浓度(SSC)的地图。为此,估算模型需要具有尽可能少的大气人为影响的数据。在这项研究中,我们比较了在Sentinel-2/MSI图像产品中应用三种不同的大气校正算法后,巴西波尔图Velho-RO Santo Antônio水电站水库的水遥感反射率(Rrs)。并以MODIS传感器的大气校正反射率作为参考。SSC的计算模型基于水库三个不同区域的红色和近红外(NIR)波段。在不同的大气校正算法下,Sentinel-2、4和8a波段以及MODIS、RED和IR波段的反射率数据变化显著。SSC地图和估算是用来显示泥沙负荷变化作为水文制度的函数。分析表明,使用GRS (Glint Remove Sentinel)大气校正的Sentinel-2 / MSI卫星图像估算的SSC平均差值为27.3%,与现场测量值最接近。MODIS产品的SSC估计值与Sentinel-2 / MSI产品的GRS大气校正估计值相差约34.6%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation Of Sentinel-2/Msi Imagery Products Level-2a Obtained By Three Different Atmospheric Corrections For Monitoring Suspended Sediments Concentration In Madeira River, Brazil.
Data provided by spatial sensors combined with remote sensing techniques and analysis of the optical properties of waters allow the mapping of the suspended sediment concentration (SSC) in aquatic bodies. For this, estimation models require data with the lowest possible amount of atmospheric artifacts. In this study we compared the water remote sensing reflectance (Rrs) of the Santo Antônio Hydroelectric Power Plant reservoir in Porto Velho-RO, Brazil, after applying three different atmospheric corrections algorithms in Sentinel-2/MSI imagery products. The atmospheric corrected reflectances of the MODIS sensor were also used for reference. SSC was calculated with models based on the red and near-infrared (NIR) bands over three distinct regions of the reservoir. Reflectance data showed significant variations for Sentinel-2, bands 4 and 8a, and MODIS, bands RED and IR, when different atmospheric correction algorithms were used. SSC maps and estimates were produced to show sediment load variation as a function of hydrological regime. The analyzes showed that the SSC estimates done with Sentinel-2 / MSI satellite images using GRS (Glint Remove Sentinel) atmospheric correction presented an average difference of 27.3% and were the closest to the in situ measurements. SSC estimates from MODIS products were around 34.6% different from estimates made using the GRS atmospheric correction applied to Sentinel-2 / MSI products.
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