现代电力2024,Vol.41Issue(6):1023-1031,9.DOI:10.19725/j.cnki.1007-2322.2022.0402
基于运动恢复结构原理的电网设施三维静态重建方法
3D Static Reconstruction Method of Power Grid Facilities Based on Principle of Structure from Motion
摘要
Abstract
The digitization of grid equipment is a key step of power grid digital twinning.The traditional manual modeling method based on design data and ledger data is inefficient and far from reality.To address the above drawbacks,a 3D static model reconstruction method for digital twin power grid facilit-ies was studied,considering the difficulty in extracting feature points due to the weak texture and single color of some power grid facilities,as well as the real-time and accuracy demands of 3D reconstruction.Firstly,based on the Structure from motion(abbr.SFM),a complete algorithm flow design was carried out for the steps of pose estimation,dense point cloud extraction,and surface reconstruction in this principle.Secondly,the ac-curacy of camera pose estimation was improved by improving the matching conditions of feature points and combining the five-spot method with the random sample consensus algorithm.Thirdly,the minimum eigenvalue algorithm and the Kanade-Lucas-Tomasi(abbr.KLT)optical flow method were combined to increase the selection number of dense point clouds,and ulti-mately effectively improve the accuracy and visual effect of point cloud reconstruction.Finally,the combined transformer box was taken as an example for experimental verification.The experimental results and precision comparison analysis show that the proposed method can quickly and accurately construct grid facilities'virtual model,which effectively supports the di-gital transformation of the traditional power grid and the imple-mentation of a digital twin power grid.关键词
数字孪生/三维重建/运动恢复结构/加速稳健特征/最小特征值算法Key words
digital twin/three-dimensional reconstruction/structure from motion/speeded up robust features/minimum eigenvalue algorithm分类
信息技术与安全科学引用本文复制引用
赵辉,韩璟琳,李光毅,张菁,胡平,刘宇航..基于运动恢复结构原理的电网设施三维静态重建方法[J].现代电力,2024,41(6):1023-1031,9.基金项目
国家电网公司总部科技项目(5100-202113564A-0-5-SF).Project Supported by State Grid Headquarters Science and Technology Project(5100-202113564A-0-5-SF). (5100-202113564A-0-5-SF)