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A new simple concept for ocean colour remote sensing using parallel polarisation radiance

机译:使用平行极化辐射的海洋颜色遥感新的简单概念

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Ocean colour remote sensing has supported research on subjects ranging from marine ecosystems to climate change for almost 35 years. However, as the framework for ocean colour remote sensing is based on the radiation intensity at the top-of-atmosphere (TOA), the polarisation of the radiation, which contains additional information on atmospheric and water optical properties, has largely been neglected. In this study, we propose a new simple concept to ocean colour remote sensing that uses parallel polarisation radiance (PPR) instead of the traditional radiation intensity. We use vector radiative transfer simulation and polarimetric satellite sensing data to demonstrate that using PPR has two significant advantages in that it effectively diminishes the sun glint contamination and enhances the ocean colour signal at the TOA. This concept may open new doors for ocean colour remote sensing. We suggest that the next generation of ocean colour sensors should measure PPR to enhance observational capability.
机译:海洋色彩遥感已经支持了近35年的从海洋生态系统到气候变化的研究。但是,由于海洋颜色遥感的框架是基于大气层顶部(TOA)的辐射强度,因此很大程度上忽略了辐射的偏振,该偏振包含有关大气和水光学特性的其他信息。在这项研究中,我们为海洋遥感提出了一个新的简单概念,该概念使用平行极化辐射(PPR)代替了传统的辐射强度。我们使用矢量辐射传输模拟和极化卫星感测数据来证明使用PPR具有两个显着优势,因为它可以有效地减少阳光闪烁污染并增强TOA处的海洋颜色信号。这一概念可能为海洋颜色遥感开辟新的大门。我们建议下一代海洋颜色传感器应测量PPR以增强观测能力。

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