arXiv:2507.06397cs.RO2025-07被引 3

用普通相机+潜水电脑实现水下洞穴高精度三维建图。

Mapping the Catacombs: An Underwater Cave Segment of the Devil's Eye System

  • 结合动作相机与潜水电脑,通过视觉惯性算法估计轨迹和稀疏点云。
  • 生成洞穴通道的平均路径及上下左右边界,还原一维通道结构。
  • 经人工测量验证,适合资源管理与考古研究的低成本水下测绘。

本文提出一种水下洞穴地图构建框架。水下洞穴对淡水管理、水下考古和水文地质研究至关重要。准确获取洞穴轮廓与尺寸,并生成照片级真实感3D地图,有助于深入理解该水下空间。本研究以佛罗里达州吉妮溪的魔鬼之眼洞穴系统中的一个洞穴段(即地宫段)为例,采用一组低成本动作相机配合潜水电脑,估计相机轨迹与稀疏点云。基于此,重建出洞穴通道的一维回缩表示:平均路径及上下左右边界。潜水电脑使视觉惯性框架(SVIn2)可观测垂直方向(z维度),并结合俯仰、翻滚信息。随后,使用SVIn2生成的关键帧与部分区域的相机位姿作为输入,通过全局优化框架COLMAP实现选定区域的稠密重建。同一洞穴段亦通过MNemo V2仪器进行人工测量,提供额外验证数据。结果表明,仅使用动作相机即可构建洞穴地图核心要素;借助由VI-SLAM工具包SVIn2引导的全局优化框架,可实现关键区域的照片级真实感稠密3D重建。

原文摘要 · Abstract (English)

This paper presents a framework for mapping underwater caves. Underwater caves are crucial for fresh water resource management, underwater archaeology, and hydrogeology. Mapping the cave's outline and dimensions, as well as creating photorealistic 3D maps, is critical for enabling a better understanding of this underwater domain. In this paper, we present the mapping of an underwater cave segment (the catacombs) of the Devil's Eye cave system at Ginnie Springs, FL. We utilized a set of inexpensive action cameras in conjunction with a dive computer to estimate the trajectories of the cameras together with a sparse point cloud. The resulting reconstructions are utilized to produce a one-dimensional retract of the cave passages in the form of the average trajectory together with the boundaries (top, bottom, left, and right). The use of the dive computer enables the observability of the z-dimension in addition to the roll and pitch in a visual/inertial framework (SVIn2). In addition, the keyframes generated by SVIn2 together with the estimated camera poses for select areas are used as input to a global optimization (bundle adjustment) framework -- COLMAP -- in order to produce a dense reconstruction of those areas. The same cave segment is manually surveyed using the MNemo V2 instrument, providing an additional set of measurements validating the proposed approach. It is worth noting that with the use of action cameras, the primary components of a cave map can be constructed. Furthermore, with the utilization of a global optimization framework guided by the results of VI-SLAM package SVIn2, photorealistic dense 3D representations of selected areas can be reconstructed.

水下测绘三维重建洞穴探索视觉惯性

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