首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >A NEW APPROACH FOR RAPID URBAN FLOOD MAPPING USING ALOS-2/PALSAR-2 IN 2015 KINU RIVER FLOOD, JAPAN
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A NEW APPROACH FOR RAPID URBAN FLOOD MAPPING USING ALOS-2/PALSAR-2 IN 2015 KINU RIVER FLOOD, JAPAN

机译:2015年Kinu河洪水中Alos-2 / Palsar-2快速城市洪水映射的一种新方法

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A near-real-time algorithm to process satellite synthetic aperture radar (SAR) imagery for urban flood detection still remains a challenge. In this paper, we developed a new floodwater detection algorithm based on SAR backscattered intensity using pre- and post-flood data observed by the Japan Aerospace Exploration Agency's Advanced Land Observing Satellite-2, which provided very high-spatial-resolution L-band SAR images (PALSAR-2 SM1, 2.5 m spatial resolution) in the case of the Kinu River flood. With this algorithm, we first classified land use types in order to analyze the characterization of urban land surface backscatters. Change detection was then conducted for the pilot area using correlation coefficients based on differences in the magnitude of the backscattering intensity derived from building orientation before and right after the flood. In particular, the flooded building was more distinguishable than with a traditional detection method.
机译:用于处理城市洪水检测的卫星合成孔径雷达(SAR)图像的近实时算法仍然是一个挑战。在本文中,我们使用日本航空航天勘探机构先进的土地观测卫星-2的预洪水数据和洪水预测,基于SAR反向散射强度的新型洪水检测算法,该卫星-2提供了非常高空间分辨率的L频段SAR在Kinu河洪水的情况下,图像(Palsar-2 SM1,2.5米空间分辨率)。利用这种算法,我们首先分类土地利用类型,以分析城市陆地表面背拍的特征。然后使用基于在洪水之后和洪水之后的建筑方向的反向散射强度的大小的差异的差异来对导频区域进行变化检测。特别是,洪水建筑物比传统检测方法更可区分。

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