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A synergy of radar and optical data of Copernicus programme for landslide mapping.

机译:雷达和哥白尼计划光学数据的协同作用,用于滑坡测绘。

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Landslides represent one of the greatest natural disasters and that makes their research notably crucial. The development of Sentinel missions, which implemented by European Space Agency (ESA) for the operational needs of the Copernicus programme that is directed by the European Commission, gives a new impetus to Earth Observation, providing timely, operational, easily accessible, global coverage and robust datasets. It is worth mentioning that the specific datasets are freely available to users from a web-based system, called "Copernicus Open Access Hub". This work deals with the exploitation of Sentinel-1 radar data as well as Sentinel-2 optical data in order to map the sliding areas of an active landslide. The landslide occurred in January 2017 as result of snow melting, while the area is located in Western Peloponnese, Greece. The total length of the landslide zone was about 300 m with a head width of 330 m while the landslide material is constituted from three different geologic formations mirroring the complex geotectonic of the wider area. In that context, radar data as well as optical data were collected and processed appropriately. Concerning radar data. Sentinel-1 images before and after the occurrence of the slide were acquired and interferometric processed yielding to a displacement map through the estimation of vertical displacements. On the other hand, corresponding Sentinel-2 optical data before and after the landslide event were collected and they were submitted to digital processing techniques such as change detection analysis. The results of the two methodologies were compared and also, they were evaluated for their accuracy using the actual displacement values obtained from GPS and UAV surveys.
机译:滑坡是最严重的自然灾害之一,因此其研究尤为重要。由欧洲航天局(ESA)实施的前哨任务的发展,是由欧洲委员会指导的哥白尼计划的运行需求,为地球观测提供了新的动力,提供了及时,可操作,易于访问的全球覆盖和强大的数据集。值得一提的是,特定的数据集可以从称为“ Copernicus开放访问中心”的基于Web的系统中免费提供给用户。这项工作涉及Sentinel-1雷达数据以及Sentinel-2光学数据的利用,以便绘制活跃滑坡的滑动区域。滑坡发生于2017年1月,是由于融雪而造成的,而该地区位于希腊的伯罗奔尼撒西部。滑坡带的总长度约为300 m,喷头宽度为330 m,而滑坡材料则由三种不同的地质构造组成,反映了更广阔区域的复杂构造。在这种情况下,对雷达数据以及光学数据进行了适当的收集和处理。关于雷达数据。采集玻片发生之前和之后的Sentinel-1图像,并通过估计垂直位移,进行干涉仪处理,得出位移图。另一方面,在滑坡事件发生之前和之后,收集了相应的Sentinel-2光学数据,并将其提交给数字处理技术,例如变化检测分析。比较了两种方法的结果,并使用从GPS和UAV测量获得的实际位移值对它们的准确性进行了评估。

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