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Automatic Extraction of Water Inundation Areas Using Sentinel-1 Data for Large Plain Areas

机译:使用Sentinel-1数据自动提取水淹没区域进行大型普通区域

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摘要

Accurately quantifying water inundation dynamics in terms of both spatial distributions and temporal variability is essential for water resources management. Currently, the water map is usually derived from synthetic aperture radar (SAR) data with the support of auxiliary datasets, using thresholding methods and followed by morphological operations to further refine the results. However, auxiliary datasets may lose efficacy on large plain areas, whilst the parameters of morphological operations are hard to be decided in different situations. Here, a heuristic and automatic water extraction (HAWE) method is proposed to extract the water map from Sentinel-1 SAR data. In the HAWE, we integrate tile-based thresholding and the active contour model, in which the former provides a convincing initial water map used as a heuristic input, and the latter refines the initial map by using image gradient information. The proposed approach was tested on the Dongting Lake plain (China) by comparing the extracted water map with the reference data derived from the Sentinel-2 dataset. For the two selected test sites, the overall accuracy of water classification is between 94.90% and 97.21% whilst the Kappa coefficient is within the range of 0.89 and 0.94. For the entire study area, the overall accuracy is between 94.32% and 96.7% and the Kappa coefficient ranges from 0.80 to 0.90. The results show that the proposed method is capable of extracting water inundations with satisfying accuracy.
机译:在空间分布和时间变化等方面准确地量化水淹没的动态是水资源管理至关重要。目前,水地图通常是从合成孔径雷达(SAR)数据得出的支持辅助数据集,使用阈值处理的方法和随后形态运算以进一步缩小的结果。然而,辅助数据集可能会失去功效大平原地区,而形态操作的参数是很难在不同的情况来决定。这里,启发式和自动水萃取(HAWE)方法提出了提取的Sentinel-1 SAR数据的水地图。在HAWE,我们整合基于瓦片的阈值和所述活动轮廓模型,其中前者提供用作启发式输入令人信服的初始水地图,而后者提炼通过使用图像梯度信息初始地图。所提出的方法是通过比较所提取的水的地图与来自哨兵-2数据集导出的基准数据上洞庭湖平原(中国)进行测试。对于两个所选择的测试位点,水分类的总体准确度为94.90%和97.21%之间,而Kappa系数是0.89和0.94的范围内。对于整个研究区域,整体精度为94.32%和96.7%和Kappa系数的范围从0.80至0.90之间。结果表明,所提出的方法能够与满足精度提取水的浸淹的。

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