arXiv:2509.19579cs.RO2025-09被引 2

构建分层地形感知的3D场景图,让机器人在户外自主导航时兼具语义理解与高效推理。

Terra: Hierarchical Terrain-Aware 3D Scene Graph for Task-Agnostic Outdoor Mapping

  • 融合地形信息生成分层语义节点,构建任务无关的轻量级地图
  • 在物体检索上持平顶尖方法,在区域分类上更优且内存效率高
  • 适用于仿真与真实环境中的物体查找和区域监控等多样化任务

户外智能自主机器人作业依赖于环境的充分表达性地图。传统几何映射方法虽保留关键结构信息,但缺乏语义理解和组织,难以支持高层机器人推理。3D场景图(3DSG)通过将几何、拓扑和语义关系整合为多层次图结构,弥补此缺陷。户外自主操作常需依赖地形信息,或因任务需求或平台可通行性。本文提出新方法,结合室内3DSG技术与标准室外几何映射及地形感知推理,生成地形感知的场所节点与分层组织区域,构建任务无关的度量-语义稀疏地图,并从中建立3DSG以支持下游规划任务,全程保持对自主机器人运行的轻量化。全面评估表明,本方法在基于摄像头的3DSG中物体检索性能达到当前最优水平,区域分类表现更优,同时内存占用更低。我们在仿真与真实环境中验证了其在物体检索与区域监测等多样任务中的有效性。

原文摘要 · Abstract (English)

Outdoor intelligent autonomous robotic operation relies on a sufficiently expressive map of the environment. Classical geometric mapping methods retain essential structural environment information, but lack a semantic understanding and organization to allow high-level robotic reasoning. 3D scene graphs (3DSGs) address this limitation by integrating geometric, topological, and semantic relationships into a multi-level graph-based map. Outdoor autonomous operations commonly rely on terrain information either due to task-dependence or the traversability of the robotic platform. We propose a novel approach that combines indoor 3DSG techniques with standard outdoor geometric mapping and terrain-aware reasoning, producing terrain-aware place nodes and hierarchically organized regions for outdoor environments. Our method generates a task-agnostic metric-semantic sparse map and constructs a 3DSG from this map for downstream planning tasks, all while remaining lightweight for autonomous robotic operation. Our thorough evaluation demonstrates our 3DSG method performs on par with state-of-the-art camera-based 3DSG methods in object retrieval and surpasses them in region classification while remaining memory efficient. We demonstrate its effectiveness in diverse robotic tasks of object retrieval and region monitoring in both simulation and real-world environments.

3D场景图地形感知机器人导航轻量化建图

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