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Automatic detection of subglacial lakes in radar sounder data acquired in Antarctica

机译:在南极获取的雷达测深仪数据中自动检测冰下湖泊

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Subglacial lakes decouple the ice sheet from the underlying bedrock, thus facilitating the sliding of the ice masses towards the borders of the continents, consequently raising the sea level. This motivated increasing attention in the detection of subglacial lakes. So far, about 70% of the total number of subglacial lakes in Antarctica have been detected by analysing radargrams acquired by radar sounder (RS) instruments. Although the amount of radargrams is expected to drastically increase, from both airborne and possible future Earth observation RS missions, currently the main approach to the detection of subglacial lakes in radargrams is by visual interpretation. This approach is subjective and extremely time consuming, thus difficult to apply to a large amount of radargrams. In order to address the limitations of the visual interpretation and to assist glaciologists in better understanding the relationship between the subglacial environment and the climate system, in this paper, we propose a technique for the automatic detection of subglacial lakes. The main contribution of the proposed technique is the extraction of features for discriminating between lake and non-lake basal interfaces. In particular, we propose the extraction of features that locally capture the topography of the basal interface, the shape and the correlation of the basal waveforms. Then, the extracted features are given as input to a supervised binary classifier based on Support Vector Machine to perform the automatic subglacial lake detection. The effectiveness of the proposed method is proven both quantitatively and qualitatively by applying it. to a large dataset acquired in East Antarctica by the Multichannel Coherent Radar Depth Sounder.
机译:冰川下的湖泊使冰盖与下面的基岩脱开,从而有利于冰团向各大洲的边界滑动,从而提高了海平面。这激发了人们对冰下湖探测的关注。到目前为止,通过分析由雷达测深仪(RS)仪器获取的雷达图,已检测到南极冰川湖总数的约70%。尽管从空中和未来的地球观测RS任务来看,雷达图的数量预计将大大增加,但目前,探测雷达图中冰河湖泊的主要方法是通过视觉解释。这种方法是主观的并且非常耗时,因此难以应用于大量的雷达图。为了解决视觉解释的局限性,并帮助冰川学家更好地了解冰下环境与气候系统之间的关系,在本文中,我们提出了一种自动检测冰下湖泊的技术。所提出技术的主要贡献是提取了用于区分湖泊和非湖泊基底界面的特征。特别是,我们建议提取局部捕获基础界面的形貌,基础波形的形状和相关性的特征。然后,将提取的特征作为基于支持向量机的监督二元分类器的输入,以执行自动的冰河下湖泊检测。通过应用该方法,定量和定性地证明了该方法的有效性。多通道相干雷达测深仪在南极东部获取的大型数据集。

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