arXiv:2604.01032cs.CV2026-04

用开源工具从月球探测影像生成亚米级高精度地形图

Sub-metre Lunar DEM Generation and Validation from Chandrayaan-2 OHRC Multi-View Imagery Using an Open-Source Pipeline

论文配图:Sub-metre Lunar DEM Generation and Validation from Chandrayaan-2 OHRC Multi-View Imagery Using an Open-Source Pipeline
图 1 · 摘自论文原文
  • 通过分析影像元数据自动筛选立体像对,构建点云并生成高分辨率数字地形模型
  • 在5个不同区域生成24至54厘米分辨率的地形图,垂直误差仅5.85米
  • 完全开源流程,适合月球探测、地形建模及空间计算研究者使用

高分辨率月面数字高程模型(DEMs)对表面移动规划、着陆区评估和行星科学至关重要。月船二号搭载的轨道高分辨率相机(OHRC)可获取约20-30厘米/像素的全色影像,是当前在轨月球成像中分辨率最高的设备。本文首次采用完全开源的处理流程,基于OHRC多视影像生成亚米级数字高程模型。通过分析影像元数据,利用基线-高度比(B/H)计算与会聚角估计,从非配对影像库中识别候选立体像对;随后进行密集立体匹配与光线三角测量,生成点云,并在五个地理分布不同的月球区域格网化为有效空间分辨率24至54厘米的DEM。通过与月球勘测轨道器窄角相机(NAC)数字地形模型进行迭代最近点(ICP)配准并修正常数偏移,实现绝对高程一致性。与NAC参考地形对比验证,垂直均方根误差(RMSE)为5.85米(在原始OHRC分辨率下),平面特征匹配评估显示水平精度优于一个像素(约30厘米)。

原文摘要 · Abstract (English)

High-resolution digital elevation models (DEMs) of the lunar surface are essential for surface mobility planning, landing site characterization, and planetary science. The Orbiter High Resolution Camera (OHRC) on board Chandrayaan-2 has the best ground sampling capabilities of any lunar orbital imaging currently in use by acquiring panchromatic imagery at a resolution of roughly 20-30 cm per pixel. This work presents, for the first time, the generation of sub-metre DEMs from OHRC multi-view imagery using an exclusively open-source pipeline. Candidate stereo pairs are identified from non-paired OHRC archives through geometric analysis of image metadata, employing baseline-to-height (B/H) ratio computation and convergence angle estimation. Dense stereo correspondence and ray triangulation are then applied to generate point clouds, which are gridded into DEMs at effective spatial resolutions between approximately 24 and 54 cm across five geographically distributed lunar sites. Absolute elevation consistency is established through Iterative Closest Point (ICP) alignment against Lunar Reconnaissance Orbiter Narrow Angle Camera (NAC) Digital Terrain Models, followed by constant-bias offset correction. Validation against NAC reference terrain yields a vertical RMSE of 5.85 m (at native OHRC resolution), and a horizontal accuracy of within a pixel (approximately 30 cm) assessed by planimetric feature matching.

月球地形数字高程模型开源处理立体匹配

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