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The effect of sub-surface volume scattering on the accuracy of ice-sheet altimeter retracking algorithms

机译:地下体积散射对冰盖高度计跟踪算法精度的影响

摘要

The NASA and ESA retracking algorithms are compared with an algorithm based upon a combined surface and volume (S/V) scattering model. First, the S/V, NASA, and ESA algorithms were used to retrack over 400,000 altimeter return waveforms from the Greenland and Antarctic ice sheets. The surface elevations from the S/V algorithm were compared with the elevations produced by the NASA and ESA algorithms to determine the relative accuracy of these algorithms when subsurface volume-scattering occurs. The results show that the NASA algorithm produced surface elevations within 35 to 50 cm of the S/V algorithm, while the performance of the ESA algorithm was slightly worse. Next, by analyzing several thousand satellite crossover points from the Antarctic data set, we determined the retracking algorithm that produced the most repeatable surface elevations. The elevations derived from the S/V algorithm had the smallest RMS error for the region of the East Antarctic plateau examined here. The ESA algorithm produced erroneous estimates of elevation change when seasonal variations were present; it measured 0.7 to 1.6-m change in elevation over a 6-month period on the East Antarctic plateau where accumulation rates are only 10 cm/year.
机译:将NASA和ESA重新跟踪算法与基于组合的表面和体积(S / V)散射模型的算法进行了比较。首先,S / V,NASA和ESA算法用于从格陵兰和南极冰原上追踪40万个高度计返回波形。将S / V算法的表面高程与NASA和ESA算法产生的高程进行比较,以确定发生地下体积散射时这些算法的相对精度。结果表明,NASA算法产生的表面高程比S / V算法高出35至50 cm,而ESA算法的性能稍差。接下来,通过分析来自南极数据集的数千个卫星交叉点,我们确定了产生最可重复的表面高程的重新跟踪算法。从S / V算法得出的高程在此处检查的东南极高原地区具有最小的RMS误差。当存在季节变化时,ESA算法会错误估计海拔变化;它测量了南极东部高原六个月期间的海拔变化0.7-1.6-m,那里的堆积速率仅为10厘米/年。

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  • 作者

    Davis Curt H.;

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  • 年度 1993
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