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An Automatic Method for Subglacial Lake Detection in Ice Sheet Radar Sounder Data

机译:冰盖雷达探测器数据中子闪光湖检测的自动方法

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摘要

During the past decades, radar sounder (RS) instruments have been effectively used to detect subglacial lakes (SLs). SLs appear as flat, smooth, and bright reflectors in RS radargrams. The visual interpretation has been the main approach to SL detection in radargrams. However, this approach is subjective and inappropriate for processing large amounts of radargrams. While the analysis of RS data for understanding the subglacial hydrology has recently received increased attention, the literature on the development of automatic methods specifically designed for SL detection is still limited. In order to fill this gap, in this paper, we propose a novel automatic technique for SL detection. The technique is made up of two steps: 1) feature extraction and 2) automatic detection. In the first step, we define and extract three families of features for discriminating between the lake and nonlake radar reflections. The features model locally the basal topography, the shape of the basal reflected waveforms, and the statistical properties of the basal signal. In the second step, we provide the features as input to a support vector machine classifier to perform the automatic SL detection. The proposed technique has been applied to radargrams acquired over two large regions in East Antarctica and Siple Coast. The obtained results, which are validated both quantitatively and qualitatively, confirm the robustness of the features and their capabilities to effectively characterize SLs. Moreover, they prove the potentiality of the method to process large amounts of radargrams and update the current SL inventory.
机译:在过去的几十年中,雷达探测器(RS)仪器已经有效地用于检测底裂湖(SLS)。 SLS在RS Radargrams中显示为平坦,光滑,光亮的反射器。视觉解释是雷达格中SL检测的主要方法。然而,这种方法是主观的,不适合处理大量雷达格。虽然卢比数据用于了解底透视水文最近收到了更多的关注,但对SL检测专门专门设计的自动方法的文献仍然有限。为了填补这一差距,在本文中,我们提出了一种用于SL检测的新型自动技术。该技术由两个步骤组成:1)特征提取和2)自动检测。在第一步中,我们定义并提取三个特征,以辨别湖泊和非增词雷达反射。本地局部地模型基础地形,基础反射波形的形状,以及基础信号的统计特性。在第二步中,我们提供作为支持向量机分类器的输入来执行自动SL检测的功能。所提出的技术已应用于东南极洲和海岸两大地区获得的雷达格。所获得的结果,其定量和定性验证,确认了特征的稳健性及其能力,以有效地表征SLS。此外,它们证明了处理大量雷达格的方法的潜力并更新当前的SL库存。

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