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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Measuring and modeling water column effects on hyperspectral reflectance in a coral reef environment
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Measuring and modeling water column effects on hyperspectral reflectance in a coral reef environment

机译:测量和建模水柱对珊瑚礁环境中高光谱反射率的影响

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摘要

Much attention has been given to hyperspectral remote sensing of benthic habitat recently to quantify spectral signatures, examine linear mixing, map geomorphic zonation, or identify temporal change with varying degrees of confidence and success. Relatively less attention has been given to the effects of the water column on the hyperspectral signal given various water depths and bottom types. Hyperspectral in situ reflectance was measured at both the top and bottom of the water column to examine the effects of the intervening water layer. A radiative transfer model was used to predict the top-of-the-water column reflectance from a large number of close-range measured bottom spectra. The measured and modeled hyperspectral reflectance spectra were examined separately to compare the degree to which different substrate types can be discriminated once the water column is "added" to the spectra. The classification accuracy assessment indicated that the ability to discriminate benthic habitat based on hyperspectral characteristics is limited when the effects of the water column are included as the kappa statistic drops from 0.70 to 0.49.
机译:最近,人们对底栖生境的高光谱遥感给予了极大关注,以量化光谱特征,检查线性混合,绘制地貌分区或以不同的置信度和成功度识别时间变化。在给定各种水深和水底类型的情况下,对水柱对高光谱信号的影响的关注相对较少。在水柱的顶部和底部都测量了高光谱原位反射率,以检查中间水层的影响。辐射转移模型用于根据大量近距离测得的底部光谱预测水柱的顶部反射率。分别检查测量和建模的高光谱反射光谱,以比较将水柱“添加”到光谱后可区分不同基质类型的程度。分类准确性评估表明,当水位的影响包括在kappa统计值从0.70降至0.49时,基于高光谱特征区分底栖生境的能力有限。

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