arXiv:2510.18991cs.RO2025-10被引 4

首部紧凑3D声呐实现水下稠密建图,突破传统2D声呐局限

Underwater Dense Mapping with the First Compact 3D Sonar

  • 首次使用紧凑3D声呐进行水下建图,融合相机与声呐外参标定
  • 在百米级洞穴环境中实现稳定定位与高精度三维重建
  • 适用于复杂水下场景研究,数据集将开源共享

过去十年,紧凑型3D感知传感器(如LiDAR)推动了鲁棒状态估计算法的发展,成为空、地、太空自主系统的标准配置。然而,电磁波在水下传播性能差,使得水下状态估计只能依赖声学传感器,而现有技术仅能提供2D信息,且存在空间模糊性。本文首次系统研究了首款紧凑型3D声呐的性能、能力与潜力。为此,我们提出了相机与3D声呐之间的外参标定方法,并分析了不同表面与材料的声学响应特性。同时,构建了新型映射与SLAM算法,在水下洞穴系统及其他几何与声学复杂环境中进行了部署测试。评估结果表明,3D声呐可提供一致的空间信息,实现百米级数据集下的详细重建与精确定位。同时揭示了声波传播带来的持续挑战,与其它声学传感器类似。用于评估的数据集将公开,以促进后续研究。

原文摘要 · Abstract (English)

In the past decade, the adoption of compact 3D range sensors, such as LiDARs, has driven the developments of robust state-estimation pipelines, making them a standard sensor for aerial, ground, and space autonomy. Unfortunately, poor propagation of electromagnetic waves underwater, has limited the visibility-independent sensing options of underwater state-estimation to acoustic range sensors, which provide 2D information including, at-best, spatially ambiguous information. This paper, to the best of our knowledge, is the first study examining the performance, capacity, and opportunities arising from the recent introduction of the first compact 3D sonar. Towards that purpose, we introduce calibration procedures for extracting the extrinsics between the 3D sonar and a camera and we provide a study on acoustic response in different surfaces and materials. Moreover, we provide novel mapping and SLAM pipelines tested in deployments in underwater cave systems and other geometrically and acoustically challenging underwater environments. Our assessment showcases the unique capacity of 3D sonars to capture consistent spatial information allowing for detailed reconstructions and localization in datasets expanding to hundreds of meters. At the same time it highlights remaining challenges related to acoustic propagation, as found also in other acoustic sensors. Datasets collected for our evaluations would be released and shared with the community to enable further research advancements.

水下建图3D声呐SLAM传感器融合

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