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Variations of spectral signature profiles of wet and dry targets for supporting the detection of water-leakages using satellite data

机译:湿目标和干目标的光谱特征谱的变化,以支持使用卫星数据检测漏水

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摘要

Satellite data can be used as a valuable tool for the detection of water pipeline leakages in semiarid areas. However the use of multi-temporal satellite images for this purpose can be problematic since reflectance values may change due to phenological changes of plants, radiometric errors during the pre-processing of satellite data, etc. It is therefore important to establish a spectral signature library with "ground truth data" for different scenarios of water leakages in a control site minimizing other potential errors. For this purpose, the GER 1500 spectroradiometer was used for measuring the reflectance values of three different targets: soil, vegetation and asphalt. The targets were saturated with a specific amount of water and then several spectroradiometric measurements were taken. The narrowband reflectance values were then re-scaled to spectral bands of Landsat 5 TM and spectral signature variations were highlighted for all targets before and after moisture level were increased. Using these data, threshold values were defined in order to be used for multispectral satellite data analysis. Specifically, this data was used for detection of water leakages in pipelines in Cyprus using Landsat 5 TM images,.
机译:卫星数据可以用作检测半干旱地区输水管道泄漏的宝贵工具。但是,为此目的使用多时相卫星图像可能会出现问题,因为反射率值可能会由于植物的物候变化,卫星数据预处理期间的辐射误差等而发生变化。因此,建立光谱特征库非常重要借助“地面真实数据”,针对控制站点中不同的漏水情况,将其他潜在错误降至最低。为此,使用GER 1500光谱仪测量三个不同目标的反射率值:土壤,植被和沥青。用一定量的水使目标饱和,然后进行几次光谱辐射测量。然后将窄带反射率值重新缩放为Landsat 5 TM的光谱带,并突出显示增加水分含量前后所有目标的光谱特征变化。使用这些数据,定义了阈值,以便用于多光谱卫星数据分析。具体而言,该数据用于使用Landsat 5 TM图像检测塞浦路斯管道中的漏水情况。

著录项

  • 来源
  • 会议地点 Dresden(DE)
  • 作者单位

    Department of Civil Engineering and Geomatics, Remote Sensing and Geo-Environment Lab, School of Engineering and Technology Cyprus University of Technology, 2-8 Saripolou, 3036 Lemesos, Cyprus;

    Department of Civil Engineering and Geomatics, Remote Sensing and Geo-Environment Lab, School of Engineering and Technology Cyprus University of Technology, 2-8 Saripolou, 3036 Lemesos, Cyprus;

    Department of Civil Engineering and Geomatics, Remote Sensing and Geo-Environment Lab, School of Engineering and Technology Cyprus University of Technology, 2-8 Saripolou, 3036 Lemesos, Cyprus;

    Department of Civil Engineering and Geomatics, Remote Sensing and Geo-Environment Lab, School of Engineering and Technology Cyprus University of Technology, 2-8 Saripolou, 3036 Lemesos, Cyprus;

    Laboratory of Geophysical-Satellite Remote Sensing Archaeoenvironment, Institute for Mediterranean Studies, Foundation for Research Technology-Hellas (F.O.R.T.H.), Nik. Foka 130, Rethymno, 74100, Crete, Greece;

    Frederick Research Centre, Filokyprou 7-9, Pallouriotissa, Nicosia;

    Southampton University, Faculty of Engineering and the Environment, Highfield, Southampton;

    Water Development Department, 100-110 Kennenty Aven., 1047 Pallouriotissa, Lefkosia;

    Water Development Department, 100-110 Kennenty Aven., 1047 Pallouriotissa, Lefkosia;

    Department of Civil Engineering and Geomatics, Remote Sensing and Geo-Environment Lab, School of Engineering and Technology Cyprus University of Technology, 2-8 Saripolou, 3036 Lemesos, Cyprus;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water leakages; remote sensing; ground spectroscopy; spectral library; dry and wet targets;

    机译:漏水;遥感;地面光谱光谱库干湿目标;
  • 入库时间 2022-08-26 13:45:17

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