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Glacier motion estimation using SAR offset-tracking procedures

机译:使用SAR偏移跟踪程序的冰川运动估计

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摘要

Two image-to-image patch offset techniques for estimating feature motion between satellite synthetic aperture radar (SAR) images are discussed. Intensity tracking, based on patch intensity cross-correlation optimization, and coherence tracking, based on patch coherence optimization, are used to estimate the movement of glacier surfaces between two SAR images in both slant-range and azimuth direction. The accuracy and application range of the two methods are examined in the case of the surge of Monacobreen in Northern Svalbard between 1992 and 1996. Offset-tracking procedures of SAR images are an alternative to differential SAR interferometry for the estimation of glacier motion when differential SAR interferometry is limited by loss of coherence, i.e. in the case of rapid and incoherent flow and of large acquisition time intervals between the two SAR images. In addition, an offset-tracking procedure in the azimuth direction may be combined with differential SAR interferometry in the slant-range direction in order to retrieve a two-dimensional displacement map when SAR data of only one orbit configuration are available.
机译:讨论了两种估计卫星合成孔径雷达(SAR)图像之间特征运动的图像到图像斑块偏移技术。基于补丁强度互相关优化的强度跟踪和基于补丁相干优化的相干跟踪用于估计两个SAR图像在倾斜范围和方位方向上的冰川表面运动。在1992年至1996年北斯瓦尔巴特群岛的Monacobreen激增的情况下,检验了这两种方法的准确性和应用范围。SAR图像的偏移跟踪程序是差分SAR干涉测量法的一种替代方法,用于估计差分SAR时的冰川运动。干涉测量法受到相干性损失的限制,即在快速不连贯的流动以及两个SAR图像之间的采集时间间隔较大的情况下。另外,当只有一个轨道配置的SAR数据可用时,可以将方位角方向上的偏移跟踪过程与倾斜范围方向上的差分SAR干涉测量法相结合,以检索二维位移图。

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