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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Accuracy assessment for mapping glacier flow velocity and detecting flow dynamics from ASTER satellite imagery: Tasman Glacier, New Zealand
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Accuracy assessment for mapping glacier flow velocity and detecting flow dynamics from ASTER satellite imagery: Tasman Glacier, New Zealand

机译:利用ASTER卫星图像绘制冰川流速并检测流动力学的准确性评估:新西兰塔斯曼冰川

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Image matching via correlation of remotely sensed imagery is an increasingly popular technique for measuring glacier flow because it can provide spatially distributed measurements while mitigating many of the challenges accompanying in situ measurements of glacier velocity. Despite the increasing use of such techniques, and the requirement for well understood uncertainties where analysis of temporal variability is sought, studies that incorporate an assessment of accuracy based on in situ data remain rare. This study presents a rigorous methodology to quantify the uncertainties that apply to glacier flow velocities derived from optical satellite imagery. This method is applied on three successive ASTER images of Tasman Glacier, New Zealand. Evaluation of the quality of co-registration between image pair constituents allows unique uncertainties to be calculated for individual velocity measurements. These uncertainties have magnitudes that correspond to sub-pixel co-registration errors and account for anisotropic co-registration variance. Compared to estimated velocities, uncertainties on the order of 2-30% are achieved. Flow-fields for the 2009-2010 and 2010-2011 periods were derived using various spectral bands and validated with in situ data obtained by GPS survey over a nearly coincident period. This revealed the importance of considering the spectral characteristics of the target surface when selecting bands for image correlation, while validation demonstrated the success of the implemented methodology. Uncertainties derived for the flow-fields permitted statistical significance of velocity change between measurement periods to be assessed. Significant velocity changes, observed across the glacier surface, suggest that the Tasman Glacier behaves in a more dynamic way than previously recognised, highlighting the advantages of the methodology described here.
机译:通过遥感影像的相关性进行图像匹配是测量冰川流量的一种越来越流行的技术,因为它可以提供空间分布的测量结果,同时减轻了冰川速度原位测量带来的许多挑战。尽管越来越多地使用这样的技术,并且需要寻求​​对时间变异性进行分析的众所周知的不确定性,但是结合基于现场数据的准确性评估的研究仍然很少。这项研究提出了一种严谨的方法,以量化适用于从光学卫星图像得出的冰川流速的不确定性。该方法应用于新西兰塔斯曼冰川的三个连续ASTER图像。图像对组成部分之间共配准质量的评估允许为各个速度测量计算出唯一的不确定性。这些不确定性具有与子像素共配准误差相对应的大小,并说明了各向异性共配准方差。与估计的速度相比,不确定性达到2-30%左右。 2009-2010年和2010-2011年期间的流场是使用各种光谱带得出的,并通过GPS勘测在几乎一致的时期获得的现场数据进行了验证。这揭示了在选择用于图像相关的波段时考虑目标表面的光谱特征的重要性,同时验证证明了所实施方法的成功。为流场得出的不确定性允许评估待评估的测量周期之间速度变化的统计显着性。在整个冰川表面观察到的明显速度变化表明,塔斯曼冰川的活动方式比以前认识到的更加动态,突出了此处描述的方法的优势。

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