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Interferometric estimation of three-dimensional ice-flow using ascending and descending passes

机译:使用上升和下降通道的三维冰流干涉测量估计

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Satellite radar interferometry (SRI) provides an important new tool for determining ice-flow velocity. Interferometric measurements made from a single-track direction are sensitive only to a single component of the three-component velocity vector. Observations from along three different track directions would allow the full velocity vector to be determined. A north/south-looking synthetic aperture radar (SAR) could provide these observations over large portions of the globe, but not over large areas of the polar ice sheets. The authors develop and demonstrate a technique that allows the three-component velocity vector to be estimated from data acquired along two track directions (ascending and descending) under a surface-parallel flow assumption. This technique requires that there are accurate estimates of the surface slope, which are also determined interferometrically. To demonstrate the technique, the authors estimate the three-component velocity field for the Ryder Glacier, Greenland. Their results are promising, although they do not have yet ground-truth data with which to determine the accuracy of their estimates.
机译:卫星雷达干涉测量法(SRI)为确定冰流速度提供了重要的新工具。从单磁道方向进行的干涉测量仅对三分量速度矢量的单个分量敏感。沿三个不同轨道方向的观察将允许确定整个速度矢量。一个北/南合成孔径雷达(SAR)可以在地球的大部分区域提供这些观测结果,但不能在极地冰原的较大区域提供这些观测结果。作者开发并演示了一种技术,该技术允许在表面平行流动假设下,根据沿两个轨道方向(上升和下降)获取的数据来估算三分量速度矢量。此技术要求对表面坡度有准确的估算,也可以通过干涉法确定。为了证明这一技术,作者估计了格陵兰莱德冰川的三分量速度场。他们的结果是有希望的,尽管他们还没有确定其估计准确性的真实数据。

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