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Application of Structured Light Imaging for High Resolution Mapping of Underwater Archaeological Sites

机译:结构光成像在水下考古遗址高分辨率制图中的应用

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摘要

This paper presents results from recent work using structured light laser profile imaging to create high resolution bathymetric maps of underwater archaeological sites. Documenting the texture and structure of submerged sites is a difficult task and many applicable acoustic and photographic mapping techniques have recently emerged. This effort was completed to evaluate laser profile imaging in comparison to stereo imaging and high frequency multibeam mapping. A ROV mounted camera and inclined 532 nm sheet laser were used to create profiles of the bottom that were then merged into maps using platform navigation data. These initial results show very promising resolution in comparison to multibeam and stereo reconstructions, particularly in low contrast scenes. At the test sites shown here there were no significant complications related to scattering or attenuation of the laser sheet by the water. The resulting terrain was gridded at 0.25 cm and shows overall centimeter level definition. The largest source of error was related to the calibration of the laser and camera geometry. Results from three small areas show the highest resolution 3D models of a submerged archaeological site to date and demonstrate that laser imaging will be a viable method for accurate three dimensional site mapping and documentation.
机译:本文介绍了近期使用结构化光激光轮廓成像技术创建水下考古遗址的高分辨率测深图的结果。对淹没部位的纹理和结构进行记录是一项艰巨的任务,并且最近出现了许多适用的声学和照相制图技术。与立体成像和高频多光束测绘相比,完成了评估激光轮廓成像的工作。使用装有ROV的相机和532 nm倾斜激光束来创建底部轮廓,然后使用平台导航数据将其合并到地图中。与多光束和立体声重建相比,这些初步结果显示出非常有希望的分辨率,尤其是在低对比度场景中。在此处显示的测试位置,没有明显的复杂性与水对激光片的散射或衰减有关。生成的地形在0.25 cm处被网格化,并显示总体厘米级别的清晰度。最大的误差源与激光和相机几何形状的校准有关。来自三个小区域的结果显示了迄今为止淹没考古现场的最高分辨率3D模型,并表明激光成像将是准确进行三维地点地图绘制和记录的可行方法。

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