Title :
Study on monitoring for power transmission line galloping based on monocular vision method
Author :
Wei Yang ; Yingbiao Shao ; Zhongbin Lv ; XiaoHui Yang ; Qing Li ; Kai Xie ; Jianlin Wei ; Bo Zhang
Abstract :
Monocular vision method is used for transmission line galloping monitoring method in this paper, and feature points is traced in the transmission line dancing video and the two-dimensional pixel variation curve is extracted feature. The parameters such as distance between feature points measured and shooting dot, camera elevation and angle of the line can be measured by the recording laser rangefinder, the corresponding relation between the pixels and the actual distance can be calculated combined with the camera focal length and pixel size parameters. The transmission line galloping trajectory can be got based on the calibration coefficient and pixel curve combination, so as to realize monitoring amplitude, frequency and order of the galloping. The accuracy and applicability of method of measuring experiment is verified by dancing model test line.
Keywords :
computer vision; feature extraction; overhead line mechanical characteristics; power engineering computing; power system measurement; video cameras; video signal processing; calibration coefficient; camera elevation; camera focal length; dancing model test line; feature extraction; feature points; laser rangefinder; monocular vision method; pixel curve; pixel size parameters; power transmission line galloping monitoring method; shooting dot; transmission line dancing video; transmission line galloping trajectory; two-dimensional pixel variation curve; Calibration; Cameras; Displacement measurement; Monitoring; Power transmission lines; Transmission line measurements; Inter-phase distance; anti-galloping device; characteristic parameters; dynamic changing; galloping; monocular vision; power transmission line; quantitative analysis; video analysis;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993883