基于双目视觉三维重建的传输线垂度测量算法

Xing Meng, Wei Yingli, Wang Yan, Tang Fan, Luan Shiyan, Jia Yafei, Sun Hao, Zhao Beibei
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引用次数: 0

摘要

输电线路是电力系统的关键部件,其工作状态对电力系统的安全运行至关重要。输电线路巡检对保证电力系统安全、可靠、有效运行起着至关重要的作用。随着国家电力系统规模的不断升级,对输电线路的巡检需求也逐渐增加。由于传统人工巡检费时、费力、实时性不强等缺点,无人机电巡检发展迅速。垂度作为输电线路安全可靠运行的重要指标,其大小直接影响到输电线路的安全稳定运行,因此垂度测量是无人机巡检必不可少的环节。本研究以输电线路巡检需求为基线,依托无人机平台对输电线路垂度测量进行研究。本文在图像预处理的基础上,采用基于三维重建的方法,引入摄像机标定方法获取参数,从像素坐标计算出图像中塔架最高点和直线最低点的三维坐标,最后根据垂度的概念计算出垂度值。与传统的测量方法相比,本研究误差更小,计算量更少,测量更方便。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmission Line Sag Measurement Algorithm Based on Binocular Vision 3D Reconstruction
Transmission line is the key component of the power system, and its working condition is very important for the safe operational aspect of the power system. Transmission line inspection plays an essential role in ensuring the power system can be operated safely, reliably, effectively. With the escalation of the scale of the national power system, the demand for inspection of power transmission lines is gradually increasing. Due to the shortcomings of traditional human inspection, such as time-consuming, laborious, and not strong real-time, UAV electric inspection develops rapidly. As an important index for the security and reliability operation of transmission lines, the size of sag directly affects the security and stableness of transmission lines, so it’s an essential part for UAV inspection to measure sag. This research studied the sag measurement of transmission lines by relying on the UAV platform, with the baseline of the requirements of transmission line inspection. On the basis of image preprocessing, this paper adopts the method based on 3D reconstruction, introduces the camera calibration method to obtain parameters, calculates the 3D coordinates of the highest point of the tower and the lowest point of the line in the image from the pixel coordinates, and finally calculates the sag value according to the concept of the sag. Compared with traditional measurement methods, this study has smaller error, less calculation and more convenient measurement.
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