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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Surface motion of mountain glaciers derived from satellite optical imagery
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Surface motion of mountain glaciers derived from satellite optical imagery

机译:来自卫星光学影像的高山冰川的表面运动

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A complete and detailed map of the ice-velocity field on mountain glaciers is obtained by cross-correlating SPOTS optical images. This approach offers an alternative to SAR interferometry, because no present or planned RADAR satellite mission provides data with a temporal separation short enough to derive the displacements of glaciers. The methodology presented in this study does not require ground control points (GCPs). The key step is a precise relative orientation of the two images obtained by adjusting the stereo model of one "slave" image assuming that the other "master" image is well georeferenced. It is performed with numerous precisely-located homologous points extracted automatically. The strong ablation occurring during summer time on the glaciers requires a correction to obtain unbiased displacements. The accuracy of our measurement is assessed based on a comparison with nearly simultaneous differential GPS surveys performed on two glaciers of the Mont Blanc area (Alps). If the images have similar incidence angles and correlate well, the accuracy is on the order of 0.5 m, or 1/5 of the pixel size. Similar results are also obtained without GCPs. An acceleration event, observed in early August for the Mer de Glace glacier, is interpreted in term of an increase in basal sliding. Our methodology, applied to SPOT5 images, can potentially be used to derive the displacements of the Earth's surface caused by landslides, earthquakes, and volcanoes.
机译:通过对SPOTS光学图像进行互相关,可以获得高山冰川上冰速场的完整且详细的地图。这种方法为SAR干涉测量提供了一种替代方法,因为目前或计划中的RADAR卫星任务都无法提供时间间隔足够短的数据来得出冰川的位移。本研究中提出的方法不需要地面控制点(GCP)。关键步骤是假设另一个“主”图像具有良好的地理参考性,通过调整一个“从”图像的立体模型获得的两个图像的精确相对方向。它是通过自动提取的大量精确定位的同源点执行的。夏季在冰川上发生的强烈烧蚀需要进行校正以获得无偏向的位移。我们根据在勃朗峰地区(阿尔卑斯山)的两座冰川上几乎同时进行的差分GPS测量的比较来评估我们的测量准确性。如果图像具有相似的入射角并很好地相关,则精度约为0.5 m,即像素大小的1/5。如果没有GCP,也会获得类似的结果。在8月初观测到的Mer de Glace冰川的加速事件是根据基底滑动的增加来解释的。我们的方法应用于SPOT5图像,可以潜在地用于推导由滑坡,地震和火山造成的地球表面位移。

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