Jantzi Austin, Jemison William, Illig David, Mullen Linda
J Opt Soc Am A Opt Image Sci Vis. 2021 Oct 1;38(10):B10-B18. doi: 10.1364/JOSAA.430543.
Combined spatial and temporal processing techniques are presented to enhance optical ranging in underwater environments. The performance of underwater light detection and ranging (lidar) is often limited by scattering. Previous work has demonstrated that both hybrid lidar-radar, which temporally modulates the amplitude of light, and optical spatial coherence filtering, which spatially modulates the phase of light, have independently reduced the effects of scattering, improving performance. The combined performance of the processing methods is investigated, and experimental results demonstrate that the combined filtering improves the performance of underwater lidar systems beyond what either method provides independently.
本文提出了结合空间和时间处理技术来增强水下环境中的光学测距。水下光探测与测距(激光雷达)的性能常常受到散射的限制。先前的工作表明,时间上调制光振幅的混合激光雷达-雷达以及空间上调制光相位的光学空间相干滤波,都能独立降低散射的影响,从而提高性能。本文研究了这些处理方法的综合性能,实验结果表明,组合滤波提高了水下激光雷达系统的性能,其效果超过了任何一种方法单独使用时的效果。