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Effects of Per-Pixel Variability on Uncertainties in Bathymetric Retrievals from High-Resolution Satellite Images

机译:像素变化对高分辨率卫星图像测深检索中不确定度的影响

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Increased sophistication of high spatial resolution multispectral satellite sensors provides enhanced bathymetric mapping capability. However, the enhancements are counter-acted by per-pixel variability in sunglint, atmospheric path length and directional effects. This case-study highlights retrieval errors from images acquired at non-optimal geometrical combinations. The effects of variations in the environmental noise on water surface reflectance and the accuracy of environmental variable retrievals were quantified. Two WorldView-2 satellite images were acquired, within one minute of each other, with Image 1 placed in a near-optimal sun-sensor geometric configuration and Image 2 placed close to the specular point of the Bidirectional Reflectance Distribution Function (BRDF). Image 2 had higher total environmental noise due to increased surface glint and higher atmospheric path-scattering. Generally, depths were under-estimated from Image 2, compared to Image 1. A partial improvement in retrieval error after glint correction of Image 2 resulted in an increase of the maximum depth to which accurate depth estimations were returned. This case-study indicates that critical analysis of individual images, accounting for the entire sun elevation and azimuth and satellite sensor pointing and geometry as well as anticipated wave height and direction, is required to ensure an image is fit for purpose for aquatic data analysis.
机译:高空间分辨率多光谱卫星传感器的复杂性提高,提供了增强的测深图绘制功能。但是,这些增强功能会因阳光照射,大气路径长度和方向效应中每个像素的变化而抵消。该案例研究突出了从非最佳几何组合获取的图像的检索错误。量化了环境噪声变化对水表面反射率和环境变量取回精度的影响。彼此之间在一分钟内获得了两个WorldView-2卫星图像,其中图像1放置在接近最佳的太阳传感器几何结构中,图像2放置在靠近双向反射率分布函数(BRDF)的镜面点处。由于增加了表面闪光和较高的大气路径散射,图像2具有较高的总环境噪声。通常,与图像1相比,图像2的深度估计不足。对图像2进行闪烁校正后,检索误差的部分改善导致最大深度增加,而准确的深度估计将返回该最大深度。该案例研究表明,需要对单个图像进行严格分析,以考虑整个太阳仰角和方位角以及卫星传感器的指向和几何形状以及预期的波高和方向,以确保图像适合用于水生数据分析。

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