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Robust algorithm for detecting floodwater in urban areas using synthetic aperture radar images

机译:用合成孔径雷达图像检测城市区洪水洪水的鲁棒算法

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Flooding is a major hazard in both rural and urban areas worldwide, but it is in urban areas that the impacts are most severe. High-resolution synthetic aperture radar (SAR) sensors are able to detect flood extents in urban areas during both day- and night-time. If obtained in near real time, these flood extents can be used for emergency flood relief management or as observations for assimilation into flood forecasting models. A method for detecting flooding in urban areas using near real-time SAR data is developed and extensively tested under a variety of scenarios involving different flood events and different images. The method uses an SAR simulator in conjunction with LiDAR data of the urban area to predict areas of radar shadow and layover in the image caused by buildings and taller vegetation. Of the urban water pixels visible to the SAR, the flood detection accuracy averaged over the test examples is 83%, with a false alarm rate of 9%. The results indicate that flooding can be detected in the urban area to reasonable accuracy but that this accuracy is limited partly by the SAR's poor visibility of the urban ground surface due to shadow and layover. (C) The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License.
机译:洪水是全球农村和城市地区的一个重大危害,但它位于城市地区,影响最严重。高分辨率合成孔径雷达(SAR)传感器能够在白天和夜间检测城市地区的洪水范围。如果在近实时获得,这些洪水区块可用于紧急洪水救济管理或作为同化洪水预测模型的观察。在涉及不同洪水事件和不同图像的各种场景下开发和广泛地测试了使用近实时SAR数据来使用近实时SAR数据检测城市地区洪水的方法。该方法使用SAR模拟器与城市地区的LIDAR数据结合使用,以预测由建筑物和更高植被引起的图像中的雷达阴影和解放区域。对于SAR可见的城市水像素,在测试示例上平均的洪水检测精度为83%,误报率为9%。结果表明,可以在城市地区检测到洪水,以合理的准确性,但这种准确性部分受到SAR由于阴影和解放而导致城市地面的可见性差。 (c)作者。由SPIE出版,根据创意公约归因于3.0未受到的许可证。

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