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Techniques for Effective Optical Noise Rejection in Amplitude-Modulated Laser Optical Radars for Underwater Three-Dimensional Imaging

机译:用于水下三维成像的调幅激光雷达中有效光学噪声抑制技术

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Amplitude-modulated (AM) laser imaging is a promising technology for the production of accurate three-dimensional (3D) images of submerged scenes. The main challenge is that radiation scattered off water gives rise to a disturbing signal (optical noise) that degrades more and more the quality of 3D images for increasing turbidity. In this paper, we summarize a series of theoretical findings, that provide valuable hints for the development of experimental methods enabling a partial rejection of optical noise in underwater imaging systems. In order to assess the effectiveness of these methods, which range from modulation/demodulation to polarimetry, we carried out a series of experiments by using the laboratory prototype of an AM 3D imager ( = 405 nm) for marine archaeology surveys, in course of realization at the ENEA Artificial Vision Laboratory (Frascati, Rome). The obtained results confirm the validity of the proposed methods for optical noise rejection.
机译:调幅(AM)激光成像技术是一种用于产生淹没场景的精确三维(3D)图像的有前途的技术。主要挑战在于,从水上散射出来的辐射会产生干扰信号(光学噪声),该信号会越来越多地降低3D图像的质量以增加浊度。在本文中,我们总结了一系列理论上的发现,这些发现为开发能够部分抑制水下成像系统中的光学噪声的实验方法提供了宝贵的提示。为了评估从调制/解调到极化的方法的有效性,在实现过程中,我们使用AM 3D成像仪(= 405 nm)的实验室原型进行了海洋考古调查,进行了一系列实验在ENEA人工视觉实验室(罗马,弗拉斯卡蒂)。获得的结果证实了所提出的光学噪声抑制方法的有效性。

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