arXiv:2412.03760cs.RO2024-12

用正交声呐子图实现复杂水下环境的高密度三维建图

Large-Scale Dense 3D Mapping Using Submaps Derived From Orthogonal Imaging Sonars

  • 基于子图与SLAM融合,构建水下三维地图
  • 在复杂环境如沉没飞机中实现高覆盖率建图
  • 无需重复物体,适用于未知复杂场景

三维环境感知对自主系统至关重要。然而在水下作业时,环境条件常要求使用声学传感器。这些传感器存在高噪声和声呐图像缺乏三维信息的问题,因此采用一对正交成像声呐以恢复三维感知数据。现有映射系统仅在离散时刻使用部分可用数据,并依赖环境中对象级别的先验信息来构建高覆盖率三维地图,且必须存在简单重复物体才能建立高覆盖率地图。本文提出一种基于子图的映射系统,集成于同步定位与地图构建(SLAM)系统中,可在包含不同密度简单重复物体的复杂未知环境中生成密集三维地图。我们对比了该子图方法与之前工作在简单及高度复杂环境(如沉没飞机)中的表现,分析了基于子图的方法与先前依赖简单重复物体的方法之间的权衡。结果表明,子图方法在提升水下态势感知方面取得进展,结合宽波束多波束成像声呐,朝着实现对完全未知复杂环境的通用大规模密集三维映射能力迈进。

原文摘要 · Abstract (English)

3D situational awareness is critical for any autonomous system. However, when operating underwater, environmental conditions often dictate the use of acoustic sensors. These acoustic sensors are plagued by high noise and a lack of 3D information in sonar imagery, motivating the use of an orthogonal pair of imaging sonars to recover 3D perceptual data. Thus far, mapping systems in this area only use a subset of the available data at discrete timesteps and rely on object-level prior information in the environment to develop high-coverage 3D maps. Moreover, simple repeating objects must be present to build high-coverage maps. In this work, we propose a submap-based mapping system integrated with a simultaneous localization and mapping (SLAM) system to produce dense, 3D maps of complex unknown environments with varying densities of simple repeating objects. We compare this submapping approach to our previous works in this area, analyzing simple and highly complex environments, such as submerged aircraft. We analyze the tradeoffs between a submapping-based approach and our previous work leveraging simple repeating objects. We show where each method is well-motivated and where they fall short. Importantly, our proposed use of submapping achieves an advance in underwater situational awareness with wide aperture multi-beam imaging sonar, moving toward generalized large-scale dense 3D mapping capability for fully unknown complex environments.

水下建图声呐三维重建SLAM

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