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Compact Polarimetric Synthetic Aperture Radar for Marine Oil Platform and Slick Detection

机译:紧凑型极化合成孔径雷达,用于海洋石油平台和浮油检测

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Compact polarimetric (CP) synthetic aperture radar (SAR) can provide ocean surface observations with large-coverage swath and abundant polarimetric scattering information. These distinctive characteristics make CP SAR a potential tool for operational monitoring oil slicks and oil platforms, overcoming the shortcomings of small spatial coverage by the traditional quad-polarization (quad-pol) SAR. In this paper, we use the RADARSAT-2 C-band quad-pol SAR data to generate CP covariance matrix elements and subsequently construct pseudoquad-pol backscatter coefficients, using two CP reconstruction algorithms to evaluate CP SAR’s applications in detection of oil slicks and oil platforms. The reconstructed co- and cross-polarization data show good agreement with original radar observations acquired at different incidence angles and wind speeds. Furthermore, we develop an unsupervised classification method using the relative phase, a logical scalar threshold that separates odd and multiple scattering events, as an indicator to discriminate oil slicks and platforms from clean ocean waters. The relative phase is positive for clean ocean surfaces where odd scattering is dominant, but negative for oil platforms and oil slick-covered areas associated with multiple scattering. The detections of oil spills and oil platforms are validated against known oil platform geographic positions and optical aircraft surveys of the oil slicks. The proposed method provides a promising technique to detect oil slicks and oil platforms from CP imaging mode SAR data, i.e., as may be acquired by the RISAT-1, ALOS-2, and the future RADARSAT Constellation Mission.
机译:紧凑型极化(CP)合成孔径雷达(SAR)可以为海面观测提供大覆盖范围和丰富的极化散射信息。这些独特的特性使CP SAR成为用于监视浮油和石油平台的潜在工具,克服了传统的四极化(quad-pol)SAR小空间覆盖的缺点。在本文中,我们使用RADARSAT-2 C波段四极极化SAR数据生成CP协方差矩阵元素,然后构造伪四极极化背向散射系数,使用两种CP重建算法评估CP SAR在浮油和油的检测中的应用平台。重建的共极化和交叉极化数据与在不同入射角和风速下获得的原始雷达观测值显示出良好的一致性。此外,我们开发了一种使用相对相位的无监督分类方法,相对相位是将奇数和多次散射事件分开的逻辑标量阈值,作为区分浮油和平台与干净的海水的指标。对于奇数散射占主导的清洁海洋表面,相对相位为正,但对于与多重散射相关的石油平台和浮油覆盖区域,相对相位为负。根据已知的石油平台地理位置和光学飞机对浮油的调查,对溢油和石油平台的检测进行了验证。所提出的方法提供了一种有前途的技术,可以从CP成像模式SAR数据(即RISAT-1,ALOS-2和未来的RADARSAT星座任务获得)来检测浮油和石油平台。

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