无人机实景三维建模在“长江口二号”古船整体迁移与保护项目中的应用
收稿日期: 2022-07-07
修回日期: 2022-07-25
录用日期: 2022-08-22
网络出版日期: 2023-11-10
Application of UAV Realistic 3D Modeling in Integral Relocation and Protection of “Yangtze River Estuary II” Ancient Ship
Received date: 2022-07-07
Revised date: 2022-07-25
Accepted date: 2022-08-22
Online published: 2023-11-10
周东荣, 陈世海, 蒋哲, 严赛男, 闫瑞海, 高宇 . 无人机实景三维建模在“长江口二号”古船整体迁移与保护项目中的应用[J]. 上海交通大学学报, 2023 , 57(S1) : 20 -24 . DOI: 10.16183/j.cnki.jsjtu.2023.S1.15
Realistic 3D modeling is the digital base for the construction of digital economy and digital engineering. This paper introduces the key technologies and control of the overall relocation and protection of “Yangtze River Estuary II” ancient ship during the process of image acquisition and realistic 3D modeling using the oblique photography technology of unmanned aerial vehicle (UAV), analyzes the accuracy of aerial triangulation in realistic 3D modeling, and finally discusses the visual display and application of the real-time 3D model through the Web 3D GIS platform.
[1] | 自然资源部办公厅. 自然资源部办公厅关于印发《实景三维中国建设技术大纲(2021版)》的通知[J]. 自然资源通讯, 2021(16): 21-24. |
[1] | Office of the Ministry of Natural Resources. Notice of the general office of the ministry of natural resources on issuing the “real 3D china construction technology outline (2021 edition)”[J]. Natural resource communication, 2021(16): 21-24. |
[2] | 曹良中, 陈曦, 杨辽, 等. 基于倾斜影像的三维城市自动建模[J]. 测绘科学, 2017, 42(1): 124-130. |
[2] | CAO Liangzhong, CHEN Xi, YANG Liao, et al. Automated three-dimensional urban modeling and accuracy evaluation using terabyte oblique aerial images[J]. Science of Surveying & Mapping, 2017, 42(1): 124-130. |
[3] | 严孝云. 基于倾斜摄影测量技术的实景三维建模技术研究[D]. 青岛: 山东科技大学, 2019. |
[3] | YAN Xiaoyun. Real three-dimensional modeling technology based on oblique photogrammetry[D]. Qingdao: Shandong University of Science and Technology, 2019. |
[4] | 郑伯桢, 文政兵. 基于航摄技术的城市实景三维建模[J]. 测绘与空间地理信息, 2022, 45(5): 178-181. |
[4] | ZHENG Bozhen, WEN Zhengbing. 3D modeling of city real scene based on aerial photography technology[J]. Geomatics & Spatial Information Technology, 2022, 45(5): 178-181. |
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