首页> 外文会议>International Conference on Computer, Electrical Communication Engineering >C-band SAR Interferometry based flood inundation mapping for Gorakhpur and adjoining areas
【24h】

C-band SAR Interferometry based flood inundation mapping for Gorakhpur and adjoining areas

机译:基于Gorakhpur和毗邻地区的C波段SAR干涉测定法

获取原文

摘要

SAR or Microwave remote sensing today has proved itself to be a paradigm shift in the field of remote sensing. With its all-weather availability, it has found variety of applications in several fields today. Till now, and mainly, floods have been mapped using optical remote sensing data since a long time. Floods have been a common and yearly catastrophe which the people of areas situated in lesser elevations and on the foothills of mountains in the Terai area must face. Proper mapping of floods can help to delineate the areas with higher loss of life and property thus aiding the relief measures. This study aims to analyze and exploit the potential of SAR Interferometry (InSAR) for flood inundation mapping using a pair of C-Band dual PolSAR datasets from Sentinel-1. The datasets were preprocessed for speckle removal and radiometric corrections. Thereafter, subset of study area was taken, and the datasets were co- registered followed by interferometric processing. The results showed low phase shift in and around the river and to some extent in the urban areas which generally does not happen unless there is an increased single bounce scatter. The topographic phase removed interferogram showed high phase variations in the core of urban areas while coherence map showed an acute loss of coherence from permanent features as well which showed high degree of flood water accumulation. This flood was mapped by masking out the low values of high coherence areas from the image using a proper threshold value. High degree of flooding was observed in Urban areas and much of agricultural land was seen to have been submerged under water once the resulting inundation map was overlaid on Google earth.
机译:今天的SAR或微波遥感已经证明自己是遥感领域的范式转变。凭借其全天候可用性,它在今天的几个领域中发现了各种应用。到目前为止,主要是,洪水已经使用很长一段时间使用光遥感数据映射。洪水一直是一个常见的和年灾难,位​​于较小的海拔地区和泰国地区山麓的地区必须面对。洪水的适当绘图可以帮助描绘具有更高生命和财产的地区,从而实现救济措施。本研究旨在使用来自Sentinel-1的一对C频段双极POLSAR数据集来分析和利用SAR干涉测量学(INSAR)的潜力。预处理数据集以进行散斑和辐射校正。此后,采取了研究区域的子集,并在干涉式处理之后进行数据集。结果表明,除非有增加的单一反弹分散,否则河流中和周围的阶段和周围的阶段均为一定程度。地形阶段移除的干扰图显示了城市地区核心的高相变化,而相干图表明从永久性特征表现出急剧丧失的连贯性,这表明了高度的洪水积累。通过使用适当的阈值掩蔽从图像的高相干区域的低值掩盖这种洪水。在城市地区观察到高度洪水,一旦由Google地球覆盖在谷歌地球上覆盖了大部分农业用地被淹没在水下。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号