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A new multi-sensor approach to measurement of topographic changes resulting from active volcanism

机译:一种新的多传感器方法来测量由主动火山产生引起的地形变化

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Remote sensing of surface deformation from volcanic activity is essential to modern volcanology. This paper provides an example of how observations from multiple sensors can be combined to measure topographic changes resulting from active volcanism. High resolution DEMs were derived from optical triplets acquired by the ALOS-PRISM sensor, and processed with microwave data from ALOS-PALSAR to produce centimeter scale deformation maps and decorrelation maps of March–April, 2009 lahars in the Drift River Valley, Alaska. We demonstrate that multi-sensor data fusion of readily available, inexpensive satellite images and data is an immediately available method of increasing accuracy and precision in measuring volcanic deposition and deformation.
机译:来自火山活性的表面变形的遥感对现代火山学至关重要。本文提供了如何将多个传感器的观察结果组合以测量主动火山产生引起的地形变化的示例。高分辨率DEM源自由Alos-Prism传感器获取的光三联网,并用来自Alos-Palsar的微波数据处理,以产生3月3日至4月的厘米级变形图和去相关地图,2009年3月的漂流河谷,阿拉斯加。我们证明了易于获得的,廉价的卫星图像和数据的多传感器数据融合是一种立即可用的方法,即在测量火山沉积和变形中提高精度和精度。

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