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Polarization characteristics of coastal waters and their impact on in-water visibility

机译:沿海水域的极化特征及其对水中能见度的影响

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摘要

Polarization characteristics of coastal waters were recently measured during a cruise on the R/V "Connecticut" in the areas of New York Harbor - Sandy Hook, NJ region using a new Stokes vector instrument developed by the Optical Remote Sensing Laboratory at CCNY. The instrument has three hyperspectral Satlantic radiance sensors each with a polarizer positioned in front of it, with polarization axes aligned at 0, 90 and 45°. The measured degrees of polarization (DOPs) and normalized radiances as a function of angle and wavelength match very well with simulated ones obtained with a Monte Carlo radiative transfer code for the atmosphere-ocean system. In order to numerically reproduce the polarized images for underwater horizontal imaging system the measured typical underwater polarized radiance was used to estimate the polarized components of the background veiling light and the blurring effects were modeled by point spread functions obtained from the measured volume scattering functions from this cruise and other typical oceanic environments. It is shown that the visibility can be improved for unpolarized target by placing a polarizer oriented orthogonally to the partially polarized direction of the veiling light before camera. The blurring effects strongly depend on the small angle scattering in the forward directions. For polarized targets the Monte Carlo simulation of slab geometry for polarized pencil light shows that the scattering medium with high g value has a very strong ability to retain the polarization status of the incident light, which can be utilized to improve the image contrasts for targets with very different polarized reflection properties.
机译:最近,使用CCNY光学遥感实验室开发的新型Stokes矢量仪器,在纽约港-新泽西州桑迪胡克地区的R / V“康涅狄格州”巡游期间测量了沿海水域的偏振特性。该仪器具有三个高光谱卫星辐射度传感器,每个传感器的前部都有一个偏振器,偏振轴对准0、90和45°。测得的偏振度(DOP)和归一化辐射度与角度和波长的关系与通过大气海洋系统的蒙特卡罗辐射转移码获得的模拟结果非常吻合。为了数值再现水下水平成像系统的偏振图像,使用测量的典型水下偏振辐射率来估计背景遮蔽光的偏振分量,并通过从测量的体积散射函数获得的点扩散函数对模糊效果进行建模,由此巡航和其他典型的海洋环境。结果表明,通过在摄像头前放置一个与面纱的部分偏振方向正交的偏振器,可以改善非偏振目标的可见性。模糊效果在很大程度上取决于向前方向上的小角度散射。对于偏振目标,偏振铅笔光的平板几何形状的蒙特卡洛模拟显示,具有高g值的散射介质具有非常强的保持入射光偏振状态的能力,可用于改善目标的图像对比度。偏振反射特性大不相同。

著录项

  • 来源
    《Ocean sensing and monitoring》|2009年|73170H.1-73170H.8|共8页
  • 会议地点 Orlando FL(US)
  • 作者单位

    Optical Remote Sensing Laboratory, the City College and the Graduate Center of CUNY, New York, NY, 10031, United States;

    Optical Remote Sensing Laboratory, the City College and the Graduate Center of CUNY, New York, NY, 10031, United States;

    Optical Remote Sensing Laboratory, the City College and the Graduate Center of CUNY, New York, NY, 10031, United States;

    Department of Research, WET Labs, Inc., 165 Dean Knauss Dr., Narragansett, Rhode Island,02882, United States;

    Naval Research Laboratory, Code 7333, Stennis Space Center, Mississippi, 39529, United States;

    Naval Research Laboratory, Code 7333, Stennis Space Center, Mississippi, 39529, United States;

    Naval Research Laboratory, Code 7333, Stennis Space Center, Mississippi, 39529, United States;

    Optical Remote Sensing Laboratory, the City Colle;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polarization; volume scattering function; visibility;

    机译:偏振;体积散射功能;能见度;

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