Using the automated HYPERNETS hyperspectral system for multi-mission satellite ocean colour validation in the Río de la Plata, accounting for different spatial resolutions

A. Dogliotti, E. Piegari, Lucas Rubinstein, Pablo Perna, Kevin G. Ruddick
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Abstract

Validation of water reflectance using in situ data is essential to ensure the quality of ocean colour satellite-derived products useful for water quality monitoring, like turbidity and chlorophyll-a concentration. Since December 2021, the HYPERNETS automated hyperspectral system has been collecting data in the optically complex and highly turbid waters of the Río de la Plata, an ideal scenario for testing atmospheric correction algorithms’ performance. The site, located 60 km south of Buenos Aires (Argentina), is described in relation to the water reflectance spectral features and variability using high spatial resolution imagery and a methodology is proposed to objectively select a sensor-specific location of a reference pixel for satellite validation. Six months of data is used to evaluate surface water reflectance operational products from multi-spectral systems like Landsat 8&9/OLI (L89/OLI), Sentinel-2/MSI (S2/MSI) & Sentinel-3/OLCI (S3/OLCI), and PlanetScope SuperDoves (PS/SD), and also non standard products for Aqua/MODIS (Aqua/MODIS) and SNPP&JPSS1/VIIRS (SJ/VIIRS) missions. Moreover, the standard surface water reflectance product from the hyperspectral PRISMA mission could also be evaluated. The matchups show general good results when in situ measurements are compared to L2 standard products of high spatial resolution sensors that use land-based atmospheric correction approach, if sun glint contamination is avoided. Low mean relative percentage difference was found for S2/MSI (2.45%) and L89/OLI (−3.52%), but higher for PS/SD (30.7%). In turn, S3/OLCI medium resolution also showed low mean relative differences (2.31%), while SJ/VIIRS and Aqua/MODIS showed larger and negative differences (−16.35 for SJ/VIIRS and −35.6% for Aqua/MODIS) which showed a clear increase towards the shortest blue bands. The results show the great potential of the HYPERNETS automated system to provide high quality and quantity of data for validation of satellite data at all visible and near infrared (VNIR, 400–900 nm) wavelengths in a multi-mission perspective.
利用 HYPERNETS 自动高光谱系统对拉普拉塔河进行多任务卫星海洋颜色验证,考虑到不同的空间分辨率
利用现场数据验证水体反射率对于确保海洋颜色卫星衍生产品(如浊度和叶绿素-a 浓度)的质量至关重要,这些产品对水质监测非常有用。自 2021 年 12 月以来,HYPERNETS 自动高光谱系统一直在光学复杂、浑浊度高的拉普拉塔河水域收集数据,这是测试大气校正算法性能的理想场景。该站点位于布宜诺斯艾利斯(阿根廷)以南 60 公里处,利用高空间分辨率图像描述了水体反射光谱特征和可变性,并提出了一种方法,以客观地选择传感器特定的参考像素位置,用于卫星验证。利用六个月的数据评估了 Landsat 8&9/OLI (L89/OLI)、Sentinel-2/MSI (S2/MSI) 和 Sentinel-3/OLCI (S3/OLCI)、PlanetScope SuperDoves (PS/SD) 等多光谱系统的地表水反射率业务产品,以及 Aqua/MODIS (Aqua/MODIS) 和 SNPP&JPSS1/VIIRS (SJ/VIIRS) 任务的非标准产品。此外,还对高光谱 PRISMA 任务的标准地表水反射率产品进行了评估。如果避免阳光闪烁污染,将原位测量结果与使用陆基大气校正方法的高空间分辨率传感器的 L2 标准产品进行比较,匹配结果总体良好。S2/MSI(2.45%)和 L89/OLI(-3.52%)的平均相对百分比差异较低,但 PS/SD 的差异较高(30.7%)。反过来,S3/OLCI 中分辨率也显示出较低的平均相对差异(2.31%),而 SJ/VIIRS 和 Aqua/MODIS 则显示出更大的负差异(SJ/VIIRS 为-16.35%,Aqua/MODIS 为-35.6%),并向最短的蓝色波段明显扩大。这些结果表明,HYPERNETS 自动系统在提供高质量和高数量的数据方面具有巨大潜力,可以从多任务的角度验证所有可见光和近红外(VNIR,400-900 nm)波长的卫星数据。
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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