Transient and Permanent Faults Identification on Parallel Transmission Lines

Article Preview

Abstract:

The phase voltage of the tripping phase contains capacitive coupling voltage and inductive coupling voltage. According to the continuous improvement of the national voltage grade, the parallel transmission lines on the same tower are widely used in main transmission section. The protection will trip the fault phases while inner-line or inter-line faults occur. The phase voltage of the tripping phase contains capacitive coupling voltage and inductive coupling voltage. Terminal voltage when the lines are in transient faults is much higher than in permanent faults because of the line discharging by fault point. Simulation studies show that the terminal voltage criterion can distinguish transient and permanent fault in parallel transmission lines.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

195-199

Citation:

Online since:

December 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Y. Ge, Method of Distinguishing Between Instant and Permanent Fault During Single-Phase Reclosing [J]. Journal of Xi'an Jiaotong University. 1984, 18(2): 23-32.

Google Scholar

[2] Y. Ge, F. Sui, Y. Xiao. Prediction methods for preventing single-phase reclosing on permanent fault. IEEE Trans on Power Delivery, 1989, 4(1): 114-121.

DOI: 10.1109/61.19197

Google Scholar

[3] Y. Fan, W. Shi. Modification of voltage criterion in the single-pole automatic reclosing of transmission lines. Automation of Electric Power Systems. 2000, 24(6): 44-47.

Google Scholar

[4] B. Li, Y. Li, etal. Study on phase criterion for single-pole adaptive reclosure. Automation of Electric Power Systems. 2003, 27(22): 41-44.

Google Scholar

[5] Fitton.D. S, Dunn.R. W, Aggarwal.R. K, etal. Design and implementation of an adaptive single pole auto re-closure technique for transmission lines using artificial neural networks. IEEE Trans on Power Delivery, 1996, 11(2): 748-756.

DOI: 10.1109/61.489331

Google Scholar

[6] Djuric.M. B, Terzija V.V. A new approach to the arcing faults detection for fast auto reclosure in transmission systems. IEEE Trans on Power Delivery, 1995, 10(4): 1793-1798.

DOI: 10.1109/61.473378

Google Scholar

[7] J. Suonan, G. Song, W. Shao, etal. Identification of Permanent Faults Based on Differential Current Protection for Transmission Lines with Two Shunt Reactors. Automation of Electric Power Systems. 2007, 31(20): 56-60.

DOI: 10.1109/apap.2011.6180404

Google Scholar

[8] Y. Zheng, Z. Huang, Z. Zhang, etal. Study on Self-adaptive auto-reclosing for Parallel Transmission Lines. Automation of Electric Power Systems. 2004, 28(22): 58-62.

Google Scholar

[9] B. Zhang; M. Lei; Y. Yuan. Optimizing the Reclosing Time to Improve the Transmission Capacity of Power Network. Relay. 1998, 26(1): 17-21.

Google Scholar