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Water depth retrieval models of East Dongting Lake, China, using GF-1 multi-spectral remote sensing images

机译:中国东洞亭湖水深度检索模型,采用GF-1多光谱遥感图像

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High-resolution satellite technology is playing an increasingly important role in environmental monitoring. As the first high-resolution satellite for earth observation in China, GaoFen-1 (GF-1) has great potential for collecting water depth data. Multispectral images from GF-1 (16?m) combined with water depth data from long-term monitoring at a hydrological station were used with the normalized difference waterbody index, density segmentation, band combination, models (single-band, multi-band, and dual-band ratio) to invert the water depth of East Dongting Lake in the dry season and to provide important references for remote sensing of water depth. The experimental results are as follows. (1) Red, green, blue, and combined bands had higher correlation with the measured data. Consequently, the green band was chosen as the factor in the single-band model; blue, green, and red bands in the multi-band model and the ratio of green to red bands in the dual-band ratio model. (2) The correlation coefficients of measured data and single-, multi-, and dual-band models were 0.848, 0.867, and 0.925, respectively. (3) The inversion results showed that average water level in East Dongting Lake was approximately 20?m in the dry season during the period 2013–2016 and it was highest in southern area, intermediate in eastern area, and lowest in the western area.
机译:高分辨率卫星技术在环境监测中发挥着越来越重要的作用。作为中国地球观察的第一个高分辨率卫星,高芬-1(GF-1)具有收集水深数据的巨大潜力。来自GF-1(16Ωm)的多光谱图像与水深数据组合在水文站的长期监测中,使用归一化差异水体指数,密度分割,频带组合,模型(单带,多频段,和双带比率)在旱季中颠倒东洞庭湖的水深,为遥感的水深提供重要的参考。实验结果如下。 (1)红色,绿色,蓝色和组合带与测量数据具有较高的相关性。因此,选择绿色带作为单带模型中的因素;多频段模型中的蓝色,绿色和红色频段和双频比模型中的绿色与红色带的比率。 (2)测量数据的相关系数分别为0.848,0.867和0.925分别为0.848,0.867和0.925。 (3)反演结果表明,在2013 - 2016年期间,东洞亭湖的平均水位约为20?米,在南部地区,东部地区中级最高,西部地区最低。

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