arXiv:2603.10248cs.RO2026-03被引 1

用调频连续波激光雷达提升复杂地形下的路径重复导航可靠性

Degeneracy-Resilient Teach and Repeat for Geometrically Challenging Environments Using FMCW Lidar

  • 基于多普勒速度的无对应关系位姿估计,避免几何退化影响
  • 引入点曲率与尺度统一机制,实现退化环境下的稳定定位
  • 在机场平坦场地等难测环境中表现优于传统ICP系统

教与重复(T&R)拓扑导航使机器人可在无GPS环境下自主重复已走路径,适用于地下矿井和月面导航等场景。现有T&R系统多依赖基于迭代最近点(ICP)的估计,但在结构稀疏的几何退化环境中,ICP常因病态导致定位性能下降。为此,本文提出一种抗退化的调频连续波(FMCW)激光雷达T&R导航系统,包含基于多普勒速度的里程计与退化感知扫描匹配定位。利用FMCW激光雷达提供的每点径向速度信息,将几何无关、无对应关系的运动估计算法扩展为可稳定估计位姿不确定性的方法。进一步提出结合每点曲率的数据关联策略,并统一平移与旋转尺度以实现一致的退化检测。闭环实地实验在三个结构丰富度不同的环境中验证,该系统均能可靠完成自主导航,尤其在传统ICP系统失效的平坦机场测试场表现优异。

原文摘要 · Abstract (English)

Teach and Repeat (T&R) topometric navigation enables robots to autonomously repeat previously traversed paths without relying on GPS, making it well suited for operations in GPS-denied environments such as underground mines and lunar navigation. State-of-the-art T&R systems typically rely on iterative closest point (ICP)-based estimation; however, in geometrically degenerate environments with sparsely structured terrain, ICP often becomes ill-conditioned, resulting in degraded localization and unreliable navigation performance. To address this challenge, we present a degeneracy-resilient Frequency-Modulated Continuous-Wave (FMCW) lidar T&R navigation system consisting of Doppler velocity-based odometry and degeneracy-aware scan-to-map localization. Leveraging FMCW lidar, which provides per-point radial velocity measurements via the Doppler effect, we extend a geometry-independent, correspondence-free motion estimation to include principled pose uncertainty estimation that remains stable in degenerate environments. We further propose a degeneracy-aware localization method that incorporates per-point curvature for improved data association, and unifies translational and rotational scales to enable consistent degeneracy detection. Closed-loop field experiments across three environments with varying structural richness demonstrate that the proposed system reliably completes autonomous navigation, including in a challenging flat airport test field where a conventional ICP-based system fails.

激光雷达路径重演退化环境导航系统

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