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Evaluating the performance of Lyzenga's water column correction in case-1 coral reef water using a simulated Wolrdview-2 imagery

机译:使用模拟WolrdView-2图像评估Lyzenga水柱校正在案例-1珊瑚礁水中的性能

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This study identified the performance of Lyzenga water column correction under controlled condition of noise, water quality, and bottom type diversity. We build a simulated multispectral imagery, represent the subsurface reflectance of coral reef environment that receives by Worldview-2 satellite. The evaluation was performed to two different subsurface reflectance: Lee et al.'s and Maritonia et al.'s radiative transfer model. As a result, in the case of simple Maritonia et al.'s reflectance model, it shows that the effect of the water column is removable. However, if the actual just above surface reflectance is as more complex as Lee et al.'s model, then the Lyzenga's water column method could reduce the effect of water attenuation but not removed. In fact, based on the mathematical presentation of Lyzenga's model on simulation reflectance formula the effect of depth and water attenuation are in multiplication function. Thus, even after the correction, the water column attenuation effect stillremain.
机译:本研究确定了在控制噪声,水质和底部类型多样性的受控条件下的Lyzenga水柱校正的性能。我们构建模拟的多光谱图像,代表珊瑚礁环境的地下反射,由WorldView-2卫星接收。评估对两种不同的地下反射率进行了:Lee等人。和Maritonia等人的辐射转移模型。结果,在简单的Maritonia等人的情况下,它的反射率模型,它表明水柱的效果是可拆卸的。但是,如果实际上方的表面反射率像Lee等人一样复杂。的模型,那么Lyzenga的水柱方法可以降低水衰减的效果,但没有去除。事实上,基于Lyzenga的模拟反射率公式模型的数学呈现,深度和水衰减的效果是乘法功能。因此,即使在校正之后,水柱衰减效果仍然激烈。

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