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Hybrid-polarimetry architecture to observe metallic targets at sea

机译:混合极化结构可观察海上金属目标

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In this study, target at sea detection is addressed using Hybrid Polarity (HP) Synthetic Aperture Radar (SAR) architecture. Wave polarimetry concepts are used to define HP features that are used to observe targets at sea. The sensitivity of HP features to both targets and the surrounding environment is analyzed through some objective norms, namely the Figure-of-Merit (FoM), the sensitivity to the background variability, the dependence on sea state and target's characteristics. Experiments undertaken on HP measurements emulated from Radarsat-2 and ALOS-PALSAR full-polarimetric actual SAR data demonstrate the effectiveness of the proposed HP approach and the different sensitivity of HP features to targets and background sea characteristics. Following those results, a ranking the HP features performance is proposed which mainly highlights that HP features complement each other in the detection process. Finally, a Constant False Alarm Rate (CFAR) approach is proposed to exploit two HP features for target detection in a unsupervised way.
机译:在这项研究中,使用混合极性(HP)合成孔径雷达(SAR)体系结构解决了海上探测目标。波极化法概念用于定义用于观察海上目标的HP功能。通过一些客观规范分析了HP特征对目标和周围环境的敏感性,即品质因数(FoM),对背景变化的敏感性,对海况的依赖性以及目标特征的敏感性。从Radarsat-2和ALOS-PALSAR全极化实际SAR数据模拟的高压测量进行的实验证明了所提出的高压方法的有效性以及高压特征对目标和背景海面特征的不同敏感性。根据这些结果,提出了对HP功能性能的排名,该排名主要强调了HP功能在检测过程中是相辅相成的。最后,提出了一种恒定误报率(CFAR)方法,以无监督的方式利用两个HP功能进行目标检测。

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