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首页> 外文期刊>Estuarine Coastal and Shelf Science >Retrieval of nearshore bathymetry from Sentinel-2A and 2B satellites in South Florida coastal waters
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Retrieval of nearshore bathymetry from Sentinel-2A and 2B satellites in South Florida coastal waters

机译:从南佛罗里达沿海水域的Sentinel-2A和2B卫星中检索近岸测深

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This study examines the relatively high-resolution MultiSpectral Instrument (MSI) onboard Sentinel-2A and 2B for generating bathymetric maps through a ratio transform model in South Florida (United States). Atmospheric correction of imagery is implemented though ACOLITE software, providing accurate performance and consistency over different Sentinel-2A/B scenes and three different study sites. Vertical calibration uses 5-10 points collected from digital charts, independent of lidar surveys, which are used for validation and error analysis. Satellite-Derived Bathymetry (SDB) has Median Absolute Error (MedAE) of 0.5 m in West Palm Beach (at depths ranging between 0 and 18 m, limit of lidar survey for validation), 0.4 m in Key West (0-5 m), and 0.22 m in Dry Tortugas (0-6 m), in conditions with low turbidity. Accurate bathymetry mapping can be accomplished with both sensors over environments with varying water transparency conditions, with the advantage of a fast, flexible, and economical solution. The 10-m MSI can capture small-scale features, such as tidal channels, straits relevant to navigation or steep slopes. While the least error is achieved by calibrating each image separately, a generic calibration produces only a moderately greater error with MedAE still similar to 1m, indicating the robustness of the approach. The research highlights the great potential of the 5-day revisit, suggesting that the twin Sentinel-2 mission of the Copernicus programme may enhance SDB to leverage its use for several operational purposes, particularly in remote and inaccessible regions of the world.
机译:这项研究检查了Sentinel-2A和2B上相对高分辨率的MultiSpectral仪器(MSI),该仪器通过比率转换模型在美国南佛罗里达州生成测深图。影像的大气校正通过ACOLITE软件实现,可在不同的Sentinel-2A / B场景和三个不同的研究地点提供准确的性能和一致性。垂直校准使用从数字海图收集的5-10个点,独立于激光雷达测量,这些点用于验证和误差分析。卫星衍生的测深法(SDB)在西棕榈滩的绝对绝对误差(MedAE)为0.5 m(在0至18 m的深度范围内,需要进行激光雷达测量以进行验证),在基韦斯特(0-5 m)为0.4 m ,在浊度低的条件下,在干龟龟(0-6 m)中为0.22 m。利用这两个传感器,可以在具有不同水透明度条件的环境中完成精确的测深图绘制,其优点是具有快速,灵活和经济的解决方案。 10米MSI可以捕获小规模的特征,例如潮汐通道,与航行有关的海峡或陡坡。尽管通过分别校准每个图像可以实现最小的误差,但是一般的校准仅在MedAE仍接近1m时才产生中等程度的误差,这表明该方法的鲁棒性。该研究凸显了为期5天的再次访问的巨大潜力,表明哥白尼计划的两次Sentinel-2任务可能会增强SDB将其用于多种运营目的的利用,特别是在世界偏远和人迹罕至的地区。

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