测绘通报 ›› 2025, Vol. 0 ›› Issue (12): 173-177.doi: 10.13474/j.cnki.11-2246.2025.1230

• 测绘地理信息技术应用案例 • 上一篇    

基于空-地协同的罗星塔精细化实景三维建模与古塔保护应用

李琳1, 李萍萍2, 李亮亮3   

  1. 1. 福建船政交通职业学院, 福建 福州 350007;
    2. 福建金创利信息科技发展股份有限公司, 福建 福州 350007;
    3. 精导信息技术有限公司, 福建 福州 350007
  • 收稿日期:2025-07-16 发布日期:2025-12-31
  • 作者简介:李琳(1984—),女,硕士,副教授,主要研究方向为测绘地理信息技术应用。E-mail:67234773@qq.com
  • 基金资助:
    科教融汇视域下校企协同共育测绘地信现场工程师培养模式研究(2024CHYB10);福建省中青年教师教育科研项目(科技类)(JAT220549)

Fine-grained real-scene 3D modeling of Luoxing pagoda via aerial-ground collaboration and application in ancient pagoda conservation

LI Lin1, LI Pingping2, LI Liangliang3   

  1. 1. Fujian Chuanzheng Communications College, Fuzhou 350007, China;
    2. Fujian Jinchuangli Information Technology Development Co., Ltd., Fuzhou 350007, China;
    3. Precise Navigation Information Technology Co., Ltd., Fuzhou 350007, China
  • Received:2025-07-16 Published:2025-12-31

摘要: 本文针对古塔数字化保护中单一技术难以兼顾高空盲区与近地精细构件的问题,构建空-地协同的精细化实景三维建模技术,提升历史建筑数字化精度与完整性。创新性融合粗模智能航线优化与空-地多源数据协同技术,通过无人机摄影测量构建粗模引导环绕贴近摄影,解决塔顶及立面高精度数据获取难题;结合地面及手持激光扫描补充塔基毫米级点云;依托ICP点云配准、双边滤波去噪及RANSAC融合算法,实现空地数据无缝集成建模。以罗星塔为例,空-地协同模型精度显著提升(RMSE为0.038 m),点云配准精度达毫米级(5 mm),纹理拉花现象改善明显。该方法突破了古塔高空与近地协同采集的技术壁垒,为文物数字化保护提供了高效、非接触的高精度解决方案,有力支撑了国家文化数字化战略实施。

关键词: 空地协同, 实景三维建模, 点云融合, 古塔保护

Abstract: To address the challenge that single-technology approaches can not simultaneously cover high-altitude blind zones and near-ground intricate components in digital preservation of ancient pagodas,this study develops an aerial-ground collaborative technical framework for fine-grained real-scene 3D modeling,enhancing the accuracy and completeness of historical building digitization.Innovatively integrating coarse-model-guided intelligent route optimization with multi-source aerial-ground data synergy: UAV photogrammetry constructs a coarse model via orthophotography to guide encircling close-range photogrammetry,enabling high-precision data acquisition of pagoda tops and facades; ground/handheld LiDAR supplements millimeter-level point clouds of base structures; ICP point cloud registration,bilateral filtering denoising,and RANSAC fusion algorithms achieve seamless integration of aerial-ground data.Applied to Luoxing pagoda,the collaborative model demonstrates significant improvements: aerial triangulation achieves a georeferencing RMSE of 0.038m,point cloud registration precision reaches 5mm,and texture ghosting is improved obviously.Structural deformations and voids at the base are fully resolved.This method overcomes technical barriers in coordinated high-altitude/near-ground data acquisition,providing an efficient,non-contact,high-precision solution for digital conservation of cultural relics,thereby robustly supporting China's national cultural digitalization strategy.

Key words: aerial-ground collaboration, real-scene 3D modeling, point cloud fusion, ancient pagoda conservation

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