Study on detection method of railway catenary detection based on computer and laser radar technology

被引:0
作者
Huang, Liping [1 ]
Xu, Cheng [1 ]
Li, Zhiqi [2 ]
机构
[1] College of Information Science and Engineering, Hunan University, Changsha
[2] College of Civil Engineering, Hunan University, Changsha
来源
Journal of Information and Computational Science | 2015年 / 12卷 / 18期
关键词
Catenary; Computer; Laser radar; Non-contact; Real-time detection;
D O I
10.12733/jics20150025
中图分类号
学科分类号
摘要
This essay proposes a method by employing static geometric parameter real-time detection applied to Chinese electrified railway catenary, which realizes the continuous non-contact real-time detection on railways. Therefore breakdowns and defects of the railway catenary can be detected by analyzing the results of the condition and quality of the catenary. This method provides a perfect solution to electrified railway catenary detection. As a result it significantly promotes the efficiency of railway catenary construction, operation and maintenance. © 2015 by Binary Information Press.
引用
收藏
页码:6761 / 6770
页数:9
相关论文
共 9 条
[1]  
Wu J., Pantograph and Cantenery System, pp. 27-28, (2010)
[2]  
Zhang T., Study on Cantenery Detection Based on Image Process and Its Improvement, Forum Album of the Tenth Annual Meeting of Logistics Industry System in Central China, (2008)
[3]  
Fu Q., Fan Y., Design of Railway Tank Laser Detection Instrument, Academic Report Conference Album of the Third Standard Measurement Committee of China Railway Society, (2008)
[4]  
Yu J., Wu M.L., Development of a detection system for the catenary vibration monitoring, 2011 International Conference on Information Technology, Computer Engineering and Management Sciences, pp. 76-79, (2011)
[5]  
Hulin B., Schusser S., Concepts for day-night stereo obstacle detection in the pantograph gauge, 2007 5th IEEE International Conference on Industrial Informatics, pp. 449-454, (2007)
[6]  
Luna Vazquez C.A., Mazo Quintas M., Marron Romera M., Noncontact sensor for monitoring catenary-pantograph interaction, International Symposium on Industrial Electronics, pp. 482-487, (2010)
[7]  
Yaman O., Karakoe M., Et al., Image processing and model based arc detection in pantograph catenary systems, 2014 22nd Signal Processing and Communications Applications Conference, pp. 1934-1937, (2014)
[8]  
Fararooy S., Review of railway overhead wire geometry measurement systems, IEE Current Collections for High Speed Trains Seminar, pp. 4/1-4/4, (1998)
[9]  
Sanchez-Rebollo C., Jimenez-Octavio J.R., Carnicero A., Active control strategy on a catenarypantograph validated model, Vehicle System Dynamics, 51, 4, pp. 554-569, (2013)