arXiv:2608.16281cs.ROcs.MA2026-08

用预设标记点实现无卫星环境下的精准定位与地图融合。

Marker-Constrained Pose-Graph Correction for Cross-Platform Georeferencing in GNSS-Denied Environments

论文配图:Marker-Constrained Pose-Graph Correction for Cross-Platform Georeferencing in GNSS-Denied Environments
图 1 · 摘自论文原文
  • 用可隐藏的反光标记作为视觉锚点,约束位姿图优化。
  • 无人机和无人车模拟场景中重访误差降低97%以上。
  • 实时处理,适合野外移动设备在无信号区使用。

在无卫星导航环境下,自主运行需统一空间参考。本文提出一种基于胆甾球形反射器(CSRs)制成的伪装匹配标记物的框架,作为预先勘测的视觉锚点。这些锚点同时为轻量级激光里程计轨迹和密集的RTAB-Map重建提供地理参考,使其输出可在卢森堡通用地心坐标系(LUREF)下统一表达,无需操作期间的GNSS测量。方法结合粗略相似性对齐与标记约束的位姿图优化。通过两次手持采集会话验证,分别模拟地面与高空运动(对应UGV和UAV),单个iMarker在六个已知位置间移动,首次位置被重新访问以量化漂移校正效果。标记锚点校正使无人机与无人车模拟会话的重访不一致性分别降低97.9%和99.1%,且优于一次性对齐的外推锚点预测性能。独立地理参考的密集重建在跨会话最近邻距离上达到58厘米中位数,无需显式跨会话配准。标记处理实现实时运行,每会话轨迹校正耗时低于0.25秒。结果证明了在无卫星环境下,利用视觉隐蔽、预勘测锚点实现轻量里程计与密集重建地理参考的可行性。

原文摘要 · Abstract (English)

Autonomous operation in GNSS-denied environments requires heterogeneous mapping pipelines to maintain a consistent spatial reference. This paper presents a framework using camouflage-matched fiducial markers fabricated from Cholesteric Spherical Reflectors (CSRs) as pre-surveyed visual anchors. The anchors georeference both a lightweight LiDAR-odometry trajectory and a dense RTAB-Map reconstruction, allowing their outputs to be expressed in a common LUREF frame (geodetic coordinate reference system used in Luxembourg) without requiring GNSS measurements during operation. The method combines coarse similarity alignment with marker-constrained pose-graph optimization. We evaluate it using two handheld acquisition sessions with ground-level and elevated motion profiles emulating UGV and UAV operation. A single iMarker was relocated among six surveyed positions, with the first position revisited to quantify drift correction. Marker-anchor correction reduced revisit inconsistency by 97.9% and 99.1% for the UAV- and UGV-emulating sessions, respectively, and improved held-out anchor prediction compared with one-time alignment. Separately georeferenced dense reconstructions achieved a median cross-session nearest-neighbour distance of 58 cm without explicit cross-session registration. Marker processing operated in real time, while trajectory correction required less than 0.25 s per session. These results demonstrate a proof of concept for georeferencing lightweight odometry and dense reconstructions using visually unobtrusive, pre-surveyed anchors during GNSS-denied operation.

定位地图构建无卫星导航

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。