arXiv:2410.17738cs.RO2024-10被引 2

融合视觉与几何信息,提升火星车地形通过性评估能力

Towards Safer Planetary Exploration: A Hybrid Architecture for Terrain Traversability Analysis in Mars Rovers

  • 结合语义分割与像素级粗糙度分析,判断地形类型和土壤特性
  • 通过几何特征识别视觉难以察觉的危险地形,生成综合代价图
  • 基于ROS2实现,可在火星模拟环境中实时评估导航安全性

无人地面车辆(UGVs)在自主导航领域持续发展,近年来已实现较高程度的自主性。然而,在火星等行星表面探索时,任务难度显著增加,因需穿越不稳且崎岖的地形,车辆面临更高风险,甚至导致任务失败。本文针对火星探测中的自主导航挑战,提出一种混合架构用于地形通过性分析,融合外观感知与几何分析方法:外观法利用深度神经网络进行语义分割,识别不同地形类型,并基于同一RGB图像的像素级粗糙度分类,根据土壤物理特性分配不同代价;几何法则补充评估地形几何特征,识别外观法无法检测的潜在危险。两方法输出整合为综合代价图。该架构在合成数据集上训练,并以ROS2实现,可集成至复杂环境下的自主导航系统。通过Unity仿真验证了其在线评估地形通过性的能力。

原文摘要 · Abstract (English)

The field of autonomous navigation for unmanned ground vehicles (UGVs) is in continuous growth and increasing levels of autonomy have been reached in the last few years. However, the task becomes more challenging when the focus is on the exploration of planet surfaces such as Mars. In those situations, UGVs are forced to navigate through unstable and rugged terrains which, inevitably, open the vehicle to more hazards, accidents, and, in extreme cases, complete mission failure. The paper addresses the challenges of autonomous navigation for unmanned ground vehicles in planetary exploration, particularly on Mars, introducing a hybrid architecture for terrain traversability analysis that combines two approaches: appearance-based and geometry-based. The appearance-based method uses semantic segmentation via deep neural networks to classify different terrain types. This is further refined by pixel-level terrain roughness classification obtained from the same RGB image, assigning different costs based on the physical properties of the soil. The geometry-based method complements the appearance-based approach by evaluating the terrain's geometrical features, identifying hazards that may not be detectable by the appearance-based side. The outputs of both methods are combined into a comprehensive hybrid cost map. The proposed architecture was trained on synthetic datasets and developed as a ROS2 application to integrate into broader autonomous navigation systems for harsh environments. Simulations have been performed in Unity, showing the ability of the method to assess online traversability analysis.

火星探测地形分析自主导航混合架构

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