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基于无人机倾斜摄影测量的空洞修补系统OA

Hollow Repair System Based on Unmanned Aerial Vehicle Oblique Photogrammetry

中文摘要英文摘要

随着无人机测绘技术与精细化三维建模技术的发展,船舶的高效率协同运动与决策控制的要求也在不断提高,船舶在军事演练协同作战中,保证舰艇自身安全的同时,也要为军事战略指挥决策者提供高精度的三维可视化模型与实时战场形势模型,提高作战效率.因此有必要对舰艇上的无人机基于倾斜摄影测量技术所构建的三维模型进行精细化构建与实时动态修补.结合无人机倾斜摄影测量的建模作业便捷、精度高、数据范围大的特点,论文提出了基于无人机倾斜摄影测量技术的三维模型空洞修补系统,利用大数据三维可视化技术实现三维模型精细化、实时、快速的修补.

With the development of unmanned aerial vehicle surveying technology and refined 3D modeling technology,the re-quirements for efficient collaborative motion and decision-making control of ships are constantly increasing.In military exercises and collaborative operations,ships need to ensure their own safety while also providing high-precision 3D visualization models and real-time battlefield situation models for military strategic command decision-makers to improve combat efficiency.Therefore,it is necessary to finely construct and dynamically repair the 3D model of unmanned aerial vehicles on ships based on oblique photogram-metry technology.Based on the characteristics of convenient,high accuracy,and large data range of unmanned aerial vehicle(UAV)oblique photogrammetry modeling,this paper proposes a 3D model cavity repair system based on UAV oblique photogram-metry technology,which utilizes big data 3D visualization technology to achieve precise,real-time,and fast repair of 3D models.

张鹏;马卓纬;刘鹏

中北大学仪器与电子学院 太原 030051||中北大学电子测试技术国家重点实验室 太原 030051中北大学仪器与电子学院 太原 030051||中北大学电子测试技术国家重点实验室 太原 030051中北大学电子测试技术国家重点实验室 太原 030051||中北大学电气与控制工程学院 太原 030051

天文与地球科学

无人机倾斜摄影测量技术空洞修补系统大数据三维可视化

UAV tilt photogrammetry technologyhollow repair systembig data 3D visualization

《舰船电子工程》 2026 (6)

36-38,70,4

10.3969/j.issn.1672-9730.2026.06.005

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