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SAR Polarimetry for Effective Sea Oil Slick Observation

机译:SAR Polarimetry用于有效的海底油漆观察

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In the context of sea oil slick observation, satellite Synthetic Aperture Radar (SAR) is the most effective remote sensing tool to observe illegal oil spills, support remediation activities and to monitor offshore critical infrastructures as oil fields. Nowadays, the availability of a virtual constellation of polarimetric SARs characterized by multi-polarization, multi-frequency and multi-imaging capabilities offers the unique opportunity to exploit an unprecedented amount of information for sea oil slick observation purposes. In this study, among the different polarimetric features that allow: i) detecting sea oil slicks, ii) discriminating strong- from weak-damping surfactants and iii) providing a spatial zoning of the damping properties of a given surfactant, the standard deviation of the co-polarized phase difference (CPD) is considered. Experimental results, undertaken over a wide dataset of actual SAR imagery collected at different imaging modes (frequency, incidence angle, noise floor, polarization) under different environmental conditions (sea state, type of oil), showed that the standard deviation of the CPD is a reliable and robust polarimetric parameter to perform effective sea oil slick monitoring.
机译:在海底油漆观测的背景下,卫星合成孔径雷达(SAR)是最有效的遥感工具,用于观察非法漏油,支持修复活动,并监测海上关键基础设施作为油田。如今,通过多极化,多频和多成像能力的偏振SAR的虚拟星座的可用性提供了利用前所未有的海底信息信息的独特机会,用于海底石油光滑观察目的。在这项研究中,在允许的不同的偏振特征中,允许:i)检测海底油的光滑,II)区分强 - 从弱阻尼表面活性剂和III)提供给定表面活性剂的阻尼性能的空间区划,标准偏差考虑共偏振相位差(CPD)。在不同的成像模式(频率,入射角,噪声,极化)下采集的实际SAR图像的宽带数据集上进行了实验结果(频率,发射角度,偏振),表明CPD的标准偏差是可靠且坚固的偏振参数,以执行有效的海底油印监控。

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