【24h】

Imaging of polarized target in underwater environment

机译:水下环境中偏振靶的成像

获取原文

摘要

Imaging of underwater targets is challenging because of the significant attenuation of the propagating light field due to the absorption and scattering by water and suspended/dissolved matter. Some living and manmade objects in water have surfaces which partially polarize the light, whose properties can be used to camouflage or, conversely, to detect such objects. The attenuation of light by the intervening water (so-called veiling light) changes both the intensity and polarization characteristics at each pixel of the image, but does not contain any information about the target and contributes to image degradation and blurring. Its properties need to be understood in order to isolate the true optical signature of the target. The main goal of this study is to retrieve the polarization characteristics of the target from the image in different water environmental and illumination conditions by taking into account coincidentally measured inherent water optical properties (IOPs) during recent field campaigns outside the Chesapeake Bay and in New York Bight. Data, in the form of images and videos, were acquired using a green-band full-Stokes polarimetric video camera. Analysis of the acquired images show reasonable agreement in Stokes vector components with the measurements by the underwater polarimeter and modeled polarized signals. In addition, Stokes vector components of the veiling light were also estimated and compared with the models. Finally, retrieval of the attenuation coefficient for the light from the target is attempted from the measurements and compared with the results of the independent measurements of IOPs.
机译:由于水和悬浮/溶解物的吸收和散射,水下目标的成像是具有挑战性的。在水中的一些生活和人造物体具有部分偏离光的表面,其特性可用于伪装或相反地,以检测这些物体。通过中间水(所谓的遮蔽光)衰减光(所谓的遮蔽光)改变了图像的每个像素处的强度和偏振特性,但不包含关于目标的任何信息并有助于图像劣化和模糊。需要理解其特性,以便隔离目标的真正光学签名。本研究的主要目的是通过考虑在Chesapeake Bay和纽约州以外的最近的野外活动期间通过巧合的固有水光学特性(IOPS)来检索不同水环境和照明条件中的图像的偏振特性。偏爱。以图像和视频形式的数据使用绿色乐队全斯托克斯极化摄像机获取。对所收购图像的分析显示了斯托克斯矢量分量的合理协议,其中水下偏振仪和建模的偏振信号。此外,还估计了遮蔽光的斯托克斯矢量分量并与模型进行比较。最后,从测量结果尝试检索来自目标的光的衰减系数,并与IOPS的独立测量结果相比。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号