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Spaceborne radar remote sensing of ocean surfaces: electromagnetic modelling and applications

机译:海洋表面的星源雷达遥感:电磁建模和应用

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摘要

Spaceborne synthetic aperture radars are powerful tools for monitoring ocean surfaces. Various environmental conditions prevailing on the ocean surfaces strongly influence the quality of detection and monitoring using spaceborne imaging radars. In this paper, we discussed the electromagnetic modelling and applications of spaceborne polarimetric synthetic aperture radar for oil spill monitoring on ocean surface. Starting with the physics of electromagnetic wave scattering by ocean surfaces, we have introduced different concepts of polarimetric radar backscattering. These concepts are later used to develop different detection algorithms for enhanced identification of oil spills on ocean surfaces. We discussed two advanced schemes for post-processing fully polarimetric radar data for accurately detecting oil spills under varying ocean conditions. In doing so, we highlighted the challenges and advantages of single and half polarimetric spaceborne missions. Finally, we demonstrated how optimal combination of different channel information further improves the detection of oil spills and reduces false alarms.
机译:星载合成孔径雷达是监控海洋表面的强大工具。海洋表面上普遍存在的各种环境条件强烈影响使用星载成像雷达的检测和监测质量。本文讨论了在海洋表面上漏油监测的空间粗偏振合成孔径雷达的电磁建模和应用。从海面散射的电磁波散射的物理开始,我们引入了不同的偏振雷达反向散射的概念。这些概念后来用于开发不同的检测算法,以增强海面上的漏油净化。我们讨论了两种先进方案,用于后处理完全偏振的雷达数据,以便在不同的海洋状况下准确地检测漏油。在这样做时,我们强调了单半偏振星球传单任务的挑战和优势。最后,我们证明了不同渠道信息的最佳组合进一步改善了漏油的检测并减少了误报。

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