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A novel underwater 3-D laser imaging system

机译:一种新型水下3-D激光成像系统

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摘要

A new system for underwater 3-D laser imaging is proposed in this paper, which utilizes gated-range technique to generate multi-distance images of underwater objects or seafloor landform. For reducing the influences on image of forward-scattering, we simulate the forward-scattering component by Monte Carlo method and analyse its temporal and frequency properties. The outcome is constructive significance to enhancing resolution and signal-to-noise ratio of the imaging system. In the reconstruction of real-time 3-D landform, an algorithm of sectional-cross interpolation which based on the random interation function system (IFS) is presented, which needs only a few points in two contours, and decreases greatly the quantities of information and computation required in the 3-D reconstruction, furthermore, contours generated by interpolation obtain fractal properties, the entire underwater 3-D laser imaging system is of real-time properties and practicable.
机译:本文提出了一种新的水下3-D激光成像系统,其利用门控技术产生水下物体或海底地域的多距离图像。 为了减少对向前散射图像的影响,我们通过蒙特卡罗方法模拟前向散射组件,并分析其时间和频率特性。 结果是提高成像系统的分辨率和信噪比的建设性意义。 在实时3-D地域的重建中,提出了一种基于随机函数系统(IFS)的剖面交叉插值算法,其仅需要两个轮廓中的几个点,并且减少了大量信息 此外,三维重建所需的计算,此外,通过内插产生的轮廓获得分形特性,整个水下3-D激光成像系统具有实时性能和切实可行。

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