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Airborne polarized lidar detection of scattering layers in the ocean

机译:机载极化激光雷达探测海洋中的散射层

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摘要

A polarized lidar technique based on measurements of waveforms of the two orthogonal-polarized components of the backscattered light pulse is proposed to retrieve vertical profiles of the seawater scattering coefficient, The physical rationale for the polarized technique is that depolarization of backscattered light originating from a linearly polarized laser beam is caused largely by multiple small-angle scattering from particulate matter in seawater. The magnitude of the small-angle scattering is determined by the scattering coefficient. Therefore information on the vertical distribution of the scattering coefficient can be derived potentially from measurements of the time-depth dependence of depolarization in the backscattered laser pulse. The polarized technique was verified by field measurements conducted in the Middle Atlantic Bight of the western North Atlantic Ocean that were supported by in situ measurements of the beam attenuation coefficient. The airborne polarized lidar measured the time-depth dependence of the backscattered laser pulse in two orthogonal-polarized components. Vertical profiles of the scattering coefficient retrieved from the time-depth depolarization of the backscattered laser pulse were compared with measured profiles of the beam attenuation coefficient. The comparison showed that retrieved profiles of the scattering coefficient clearly reproduce the main features of the measured profiles of the beam attenuation coefficient. Underwater scattering layers were detected at depths of 20-25 m in turbid coastal waters. The improvement in dynamic range afforded by the polarized lidar technique offers a strong potential benefit for airborne lidar bathymetric applications. [References: 31]
机译:提出了一种基于对背向散射光脉冲的两个正交偏振分量的波形测量的偏振激光雷达技术,以获取海水散射系数的垂直分布图。该偏振技术的物理原理是,线性散射产生的背向散射光进行去偏振偏振激光束主要是由海水中颗粒物的多个小角度散射引起的。小角散射的大小由散射系数确定。因此,关于散射系数的垂直分布的信息可以潜在地从对反向散射的激光脉冲中去极化的时间深度依赖性的测量中得出。极化技术通过在北大西洋西部大西洋中部大西洋进行的野外测量得到了验证,这些测量得到了光束衰减系数的现场测量的支持。机载偏振激光雷达测量了两个正交偏振分量中后向散射激光脉冲的时间深度依赖性。从后向散射激光脉冲的时间深度去极化获得的散射系数的垂直分布图与光束衰减系数的测量分布图进行了比较。比较表明,散射系数的检索轮廓清楚地再现了光束衰减系数的测量轮廓的主要特征。在浑浊的沿海水域中,在20-25 m的深度检测到了水下散射层。极化激光雷达技术所提供的动态范围的改进为机载激光雷达测深应用提供了强大的潜在优势。 [参考:31]

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