首页> 外文会议>Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International >Coastal geomorphologic change detection using SAR and optical remote sensing data at the Nakdong River Estuary, Korea
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Coastal geomorphologic change detection using SAR and optical remote sensing data at the Nakdong River Estuary, Korea

机译:利用那空河河口的SAR和光学遥感数据进行海岸地貌变化检测

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Coastal geomorphology in the Nakdong River Delta, South Korea, has conspicuously changed partly by human activities and partly by natural processes. In this study, we discuss the characteristics of SAR data over the coastal region and an efficient approach to detect coastal geomorphologic change in the study area. Eight data sets were collected over the study area including four SAR images. Although SAR images are very useful to detect coastal change, speckle noise in SAR images is, however, a serious problem in this application. A weighted averaging process of multiple SAR data sets in the wavelet domain effectively reduces the speckle in the RADARSAT SAR fine beam mode image. The speckle reduced SAR image is then combined with optical data such as Landsat TM or MSS to evaluate the morphologic changes in the coastal region. The straight comparison of optical and SAR data is not efficient mainly because of differences in resolution. Instead of that, optical and SAR data fusion through the Brovey transform enhances the geomorphologic changes in the coastal area. Through the approach, we have successfully delineated the geomorphologic changes made by natural processes and human activities over the study area. In short, the SAR data acquired in different resolutions and incidence angles are very promising to monitor geomorphologic changes in coastal regions when they are combined with optical remote sensing data.
机译:韩国那空河三角洲的沿海地貌,部分是由于人类活动而部分是由于自然过程而发生的。在这项研究中,我们讨论了沿海地区SAR数据的特征,以及检测研究区域沿海地貌变化的有效方法。在研究区域内收集了八个数据集,其中包括四个SAR图像。尽管SAR图像对于检测海岸变化非常有用,但是SAR图像中的斑点噪声在此应用中是一个严重的问题。小波域中多个SAR数据集的加权平均处理有效地减少了RADARSAT SAR细光束模式图像中的斑点。然后将斑点减少的SAR图像与Landsat TM或MSS等光学数据结合起来,以评估沿海地区的形态变化。光学和SAR数据的直接比较效率不高,主要是因为分辨率不同。取而代之的是,通过Brovey变换进行的光学和SAR数据融合增强了沿海地区的地貌变化。通过这种方法,我们成功地描述了研究区域内自然过程和人类活动造成的地貌变化。简而言之,将不同分辨率和入射角的SAR数据与光学遥感数据结合起来,非常有希望监测沿海地区的地貌变化。

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