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Super-resolution optical mapping of floating macroalgae from geostationary orbit

机译:从地球静止轨道浮动大甲状腺素的超分辨率光学映射

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摘要

The spatial resolution of an observation from a geostationary orbiting satellite is usually too coarse to track small scale macroalgae blooms. For macroalgae mapping to benefit from a geostationary orbit's staring monitoring and frequent revisit intervals, we introduced a super-resolution method that reconstructs a high-resolution (HR) image of a region from a sequence of raw geostationary low-resolution images of the same region. We tested our method with GF-4 images at 50 m spatial resolution and demonstrated that the spatial resolution increased to 25 m. In addition, the derived HR image had better image quality characterized by a higher signal-to-noise ratio, clarity, and contrast. The increased spatial resolution and improved image quality improved our ability to distinguish macroalgae patches from the surrounding waters, especially tiny patches of macroalgae, and to precisely delineate the patch boundaries. Lastly, we more accurately estimated the areal coverage of the patches by reducing underestimation of the coverage of tiny patches and overestimation of the coverage of large patches. (C) 2020 Optical Society of America
机译:从地球静止轨道卫星的观察的空间分辨率通常太粗糙,无法跟踪小尺寸的大型宏观绽放。对于宏观格子映射,从地球静止轨道的凝视监测和频繁的重新访问间隔中受益,我们介绍了一种超分辨率方法,该方法从同一区域的原始地静止低分辨率图像的序列重建一个区域的高分辨率(HR)图像。我们在50米空间分辨率下使用GF-4图像测试了我们的方法,并证明了空间分辨率增加到25米。另外,衍生的HR图像具有更好的图像质量,其特征在于更高的信噪比,清晰度和对比度。增加的空间分辨率和改善的图像质量提高了我们将宏观格子斑块与周围水域不同的能力,尤其是斑块的微小斑块,并准确地描绘贴片边界。最后,我们更准确地估计了贴片的面积覆盖,通过减少微小斑块的覆盖率和大拇指覆盖大斑块的高估。 (c)2020美国光学学会

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    《Applied optics》 |2020年第10期|共8页
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