Research on Fault Identification Technology of Jumper Windage Yaw Flashover

Article Preview

Abstract:

jumper has been weakness of protection of windage yaw flashover in Grid, timely and effective identification method of windage yaw flashover is lacked in the existing power system; focusing on the point that less jumper windage yaw flashover, the phenomenon of jumper windage yaw flashover is explored, by checking windage yaw angle and the minimum air space under strong wind, to confirm the possibility of jumper windage yaw flashover caused by strong wind; by mining the law of the jumper windage yaw flashover, and applying the fractal theory calculation, the electromagnetic transient characteristics of transient current travelling waves is studied, to propose a jumper windage yaw fault identification method based on the similarity of transient current travelling waves, which is successfully applied to Hainan Power Grid’s Fuguan line jumper windage yaw flashover in 2011.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1194-1200

Citation:

Online since:

December 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] LONG Li-hong, HU Yi, LI Jing-hu, etc. Study on Windage Yaw Discharge of Transmission Line[J]. High voltage engineering, 2006, 32(4) :19-21.

Google Scholar

[2] Masayuki A, Nobuo O, Tokuo B, et al. development of a new fault location system for multi-terminal signal transmission lines. IEEE Trans on Power Delivery, 1995, 101, 10(1) :159-168.

DOI: 10.1109/61.368402

Google Scholar

[3] ZHANG Yu-fang. Analysis on flashover between tower and conducting wires in domestic 500kv transmission lines caused by windage yaw[J]. Power System Technology, 2005, 29(7) :65-73.

Google Scholar

[4] SUN Bao-qiang, HOU Lei, MENG Xaio-bo, etc. Characteristics analysis of conductours diapacement under different wind speed[J]. High Voltage Engineering, 2010, 36(11) :2808-2813.

Google Scholar

[5] HUNANG Xin-bo, TAO Baoz-hen, ZHAO Long, etc. Design of transmission lines new wind deviation on-line monitoring system [J]. High Voltage Engineering, 2011, 37(10):2350-2355.

Google Scholar

[6] HU Yi. Study on tirp caused by windage yaw of 500kv transmission line [J]. High Voltage Engineering, 2004, 30(8) :9-10.

Google Scholar

[7] Zheng Jiayan. Under the action of dynamic air suspension insulator string windage yaw computing research [D]. Chongqing: chongqing university, (2006).

Google Scholar

[8] Wang xuesheng, Uhv transmission lines computing research of anti windage yaw flashover performance [D]. Chengdu: southwest jiaotong university, (2005).

Google Scholar

[9] SHAO Gui-wei, MIN Xuan, DONG Yan-we, et al. Simulation analysis of the equivalent wind loads on the transmission conductor two hanging points[J]. High Voltage Engineering, 2012, 38(2):476-481.

Google Scholar

[10] SHAO Gui-wei, GENG Cui-ying, HU Yi. Analysis on the parameters of windage yaw design in the world[J]. high voltage engineering, 2008, 34(12):3106-3110.

Google Scholar

[11] FU Xue-wen, WANG Pei-jun, WEI Zhi-juan. Reaseach on 500KV transmission windage yaw accident prevention conter measures[J]. North China Electric Power. 2011, 4:5-8.

Google Scholar

[12] HU Yi, WANG Li-nong, SHAO Gui-wei, et al. Influence of rain and wind on power frequency discharge characteristic of conductor-to-tower air space[J]. High Voltage Engineering, 2008, 34(5):845-850.

Google Scholar

[13] JIA Bo-yan, GENG Jiang-hai, FANG Chun-hua, et al. Influence of wind speed and direction on flashover characteristic of composite insulators[j]. high voltage engineering, 2012, 38(1):75-81.

Google Scholar