arXiv:2502.10975cs.ROcs.CV2025-02被引 6

用3D高斯点云提升大场景下GNSS+视觉惯性导航精度

GS-GVINS: A Tightly-integrated GNSS-Visual-Inertial Navigation System Augmented by 3D Gaussian Splatting

  • 以3D高斯为连续可微场景表示,融合GNSS/视觉/惯性数据
  • 在开放天空、城郊、城市环境均实现定位精度提升
  • 首次直接使用SE3对3D高斯的解析雅可比,适合高动态户外场景

近期,3D高斯点云(3DGS)在三维地图重建与视觉SLAM领域受到广泛关注。尽管已有研究探索了3DGS在室内环境下仅用视觉传感器或结合激光雷达与惯性测量单元(IMU)的轨迹追踪,但其与全球导航卫星系统(GNSS)在大尺度室外导航中的融合仍鲜有涉及。为此,本文提出GS-GVINS:一种由3DGS增强的紧耦合GNSS-视觉惯性导航系统。该系统利用3D高斯作为大尺度室外环境中的连续可微场景表示,通过构建的3D高斯地图提升导航性能。值得注意的是,GS-GVINS是首个直接利用相机位姿在SE3空间中对3D高斯的解析雅可比的GNSS-视觉惯性导航应用。为在极端动态状态下保持3DGS渲染质量,引入基于运动的3D高斯剪枝机制,依据相对位姿平移和沿相机射线累积不透明度更新地图。在开放天空、郊区及城市等多种驾驶环境中进行验证,使用自采集与公开数据集评估。结果表明,GS-GVINS在多种驾驶环境下均有效提升了导航精度。

原文摘要 · Abstract (English)

Recently, the emergence of 3D Gaussian Splatting (3DGS) has drawn significant attention in the area of 3D map reconstruction and visual SLAM. While extensive research has explored 3DGS for indoor trajectory tracking using visual sensor alone or in combination with Light Detection and Ranging (LiDAR) and Inertial Measurement Unit (IMU), its integration with GNSS for large-scale outdoor navigation remains underexplored. To address these concerns, we proposed GS-GVINS: a tightly-integrated GNSS-Visual-Inertial Navigation System augmented by 3DGS. This system leverages 3D Gaussian as a continuous differentiable scene representation in largescale outdoor environments, enhancing navigation performance through the constructed 3D Gaussian map. Notably, GS-GVINS is the first GNSS-Visual-Inertial navigation application that directly utilizes the analytical jacobians of SE3 camera pose with respect to 3D Gaussians. To maintain the quality of 3DGS rendering in extreme dynamic states, we introduce a motionaware 3D Gaussian pruning mechanism, updating the map based on relative pose translation and the accumulated opacity along the camera ray. For validation, we test our system under different driving environments: open-sky, sub-urban, and urban. Both self-collected and public datasets are used for evaluation. The results demonstrate the effectiveness of GS-GVINS in enhancing navigation accuracy across diverse driving environments.

视觉惯性3D高斯导航系统紧耦合

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