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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Monitoring Temperate Glacier Displacement by Multi-Temporal TerraSAR-X Images and Continuous GPS Measurements
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Monitoring Temperate Glacier Displacement by Multi-Temporal TerraSAR-X Images and Continuous GPS Measurements

机译:通过多时相TerraSAR-X图像和连续GPS测量来监测温带冰川位移

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摘要

A new generation of space-borne SAR sensors were launched in 2006–2007 with ALOS, TerraSAR-X, COSMO-Sky-Med and RadarSat-2 satellites. The data available in different bands (L, C and X bands), with High Resolution (HR) or multi-polarization modes offer new possibilities to monitor glacier displacement and surface evolution by SAR remote sensing. In this paper, the first results obtained with TerraSAR-X HR SAR image time series acquired over the temperate glaciers of the Chamonix Mont-Blanc test site are presented. This area involves well-known temperate glaciers which have been monitored and instrumented i.e. stakes for annual displacement/ablation, GPS for surface displacement and cavitometer for basal displacement, for more than 50 years. The potential of 11-day repeated X-band HR SAR data for Alpine glacier monitoring is investigated by a combined use of in situ measurements and multi-temporal images. Interpretations of HR images, analysis of interferometric pairs and performance assessments of target/texture tracking methods for glacier motion estimation are presented. The results obtained with four time series covering the Chamonix Mont-Blanc glaciers over one year show that the phase information is rarely preserved after 11 days on such glaciers, whereas the high resolution intensity information allows the main glacier features to be observed and displacement fields on the textured areas to be derived.
机译:2006年至2007年,新一代的星载SAR传感器与ALOS,TerraSAR-X,COSMO-Sky-Med和RadarSat-2卫星一起发射。具有高分辨率(HR)或多极化模式的不同波段(L,C和X波段)中可用的数据提供了通过SAR遥感监测冰川位移和表面演变的新可能性。本文介绍了在夏蒙尼·勃朗峰试验场的温带冰川上使用TerraSAR-X HR SAR图像时间序列获得的第一个结果。该地区涉及著名的温带冰川,这些冰川已经被监测和仪器化,例如用于逐年位移/消融的桩,用于地面位移的GPS和用于基础位移的空化仪已有50多年的历史了。通过结合使用原位测量和多时间图像,研究了11天重复X波段HR SAR数据在高山冰川监测中的潜力。提出了HR图像的解释,干涉对的分析以及冰川运动估计的目标/纹理跟踪方法的性能评估。用一年覆盖夏蒙尼勃朗峰冰川的四个时间序列获得的结果表明,此类冰川在11天后几乎不保存相位信息,而高分辨率强度信息则可以观察到主要的冰川特征和位移场。要导出的纹理区域。

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