基于偏振激光雷达分层反演海洋漫射衰减系数
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北京空间机电研究所

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O436

基金项目:

国家自然科学基金(62175072),民用航天技术预先研究项目(D040107)


Layered Inversion of Ocean Diffuse Attenuation Coefficient Based on Polarization Lidar
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Beijing Institute of Space Mechanical and Electrical Engineering

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the National Natural Science Foundation of China(62175072), Civil Space Technology Pre-Research Project (D040107)

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    摘要:

    漫射衰减系数Kd是海洋光学中的核心参数之一,是由海水本身的光学性质和海水中的环境光场共同决定的表观光学参数,与海水水质和叶绿素浓度等密切相关。作为主动遥感手段,海洋偏振激光雷达发射能够穿透海水的蓝绿波段光源,具备全天时探测能力,这对于探测海洋Kd的剖面分布具有独特的优势。基于激光雷达的主动遥感手段,采用双偏振通道信号作为数据源,其中垂直偏振通道可用于抑制海表信号来增强近岸的海洋剖面后向散射信号,结合Fernald后向迭代法和斜率法,提出了一种分层反演海洋剖面漫射衰减系数Kd的方法。黄东海海域作为实验区域,将海洋激光雷达设备部署在海上实验平台,以10m水深作为分层算法的实验验证。实验结果显示,双偏振通道信号在海表处的偏振度为0.479,以1m作为垂直分辨率,双偏振通道分层反演海洋剖面Kd结果与实际原位测量数据的均方根误差为0.049,与非偏振通道信号相比,精度提升了52.4%;分层反演算法与传统Fernald算法相比,精度提升了32.4%。

    Abstract:

    The diffuse attenuation coefficient (Kd) is a crucial parameter in ocean optics, representing an apparent optical property influenced by the inherent optical characteristics of seawater and the surrounding light field. It is closely related to factors such as seawater quality and chlorophyll concentration. As an active remote sensing instrument, marine polarized lidar emits light in the blue-green wavelength band capable of penetrating seawater, offering all-weather detection potential, and possesses a distinct edge in mapping the vertical distribution of Kd within the ocean. By combining Fernald"s backward iteration and slope approaches, this study proposed a layered inversion method for oceanic profile Kd estimation, utilizing dual-polarization channel signals. The vertical polarization channel is specifically used to suppress surface signals and enhance near-shore oceanic backscatter. Conducted in the Yellow and East China Seas, the ocean lidar was mounted on a marine experimental platform, with a 10-meter water depth used to validate the stratification algorithm. Results show a polarization degree of 0.479 at the sea surface for the dual-polarization channel signal. With a vertical resolution of 1 meter, the stratified inversion of the oceanic profile Kd using dual-polarization channels yields a root mean square error of 0.049 compared to actual in-situ measurements, representing a 52.4% improvement in accuracy over non-polarized channel signals. Additionally, the layered inversion algorithm outperforms the traditional Fernald algorithm, demonstrating a 32.4% improvement in precision.

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  • 收稿日期:2025-04-01
  • 最后修改日期:2025-06-04
  • 录用日期:2025-06-10
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