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A Depolarization Ratio Anomaly Detector to Identify Icebergs in Sea Ice Using Dual-Polarization SAR Images

机译:使用双极化SAR图像的去极化比异常检测器识别海冰中的冰山

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摘要

Icebergs represent hazards to maritime traffic and offshore operations. Satellite synthetic aperture radar (SAR) is very valuable for the observation of polar regions, and extensive work was already carried out on detection and tracking of large icebergs. However, the identification of small icebergs is still challenging especially when these are embedded in sea ice. In this paper, a new detector is proposed based on incoherent dual-polarization SAR images. The algorithm considers the limited extension of small icebergs, which are supposed to have a stronger cross-polarization and higher cross- over copolarization ratio compared to the surrounding sea or sea ice background. The new detector is tested with two satellite systems. First, RADARSAT-2 quad-polarimetric images are analyzed to evaluate the effects of high-resolution data. Subsequently, a more exhaustive analysis is carried out using dual-polarization ground-detected Sentinel-1a extra wide swath images acquired over the time span of two months. The test areas are in the east coast of Greenland, where several icebergs have been observed. A quantitative analysis and a comparison with a detector using only the cross-polarization channel are carried out, exploiting grounded icebergs as test targets. The proposed methodology improves the contrast between icebergs and sea ice clutter by up to 75 times. This returns an improved probability of detection.
机译:冰山对海上交通和海上作业构成危害。卫星合成孔径雷达(SAR)对于极地地区的观测非常有价值,并且已经在检测和跟踪大型冰山方面进行了广泛的工作。然而,小型冰山的识别仍然具有挑战性,特别是当它们被嵌入海冰中时。本文提出了一种基于非相干双极化SAR图像的新型探测器。该算法考虑了小冰山的有限扩展,这些小冰山与周围的海或海冰背景相比,被认为具有更强的交叉极化和更高的交叉共极化比率。新的探测器在两个卫星系统上进行了测试。首先,分析RADARSAT-2四极化图像,以评估高分辨率数据的影响。随后,使用在两个月时间内获得的双极化地面检测Sentinel-1a超宽幅图像进行了更详尽的分析。测试区位于格陵兰岛的东海岸,那里已经观察到了一些冰山。利用接地的冰山作为测试目标,进行了定量分析并与仅使用交叉极化通道的检测器进行了比较。所提出的方法可以将冰山和海冰杂物之间的对比度提高多达75倍。这返回了提高的检测概率。

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