DocumentCode :
1777236
Title :
Analysis and characterization of the shunt reactor switching over-voltages interrupted by SF6 circuit breakers with chopping current
Author :
Sun Qiuqin ; Ma Yong ; Xie Tianxi ; Liu Yang ; Zhou Zhicheng ; Tao Fengbo
fYear :
2014
fDate :
20-22 Oct. 2014
Firstpage :
1234
Lastpage :
1237
Abstract :
Shunt reactor interruption by circuit breakers may produce current chopping and cause severe overvoltages. The four-legged reactor interrupting transients are elucidated with equivalent circuit analysis, and the mechanism of beat frequency oscillation is also characterized, further, a 3-D portfolio of the beat frequency, specifically regarding shunt reactor interrupting with a short line distance is given to describe the variation trend versus the shunt reactor´s parameters. Based on the available parameters from an installed 750kV transmission line in China, simulations of the four-legged reactor interruption process are carried out with adoption of an appropriate arc model for SF6 circuit breakers, and the scenario of the switching overvoltages is presented for the shunt reactor interrupting. The research results present useful reference for future construction and operation of the EHV and UHV transmission lines.
Keywords :
SF6 insulation; circuit breakers; equivalent circuits; power transmission lines; reactors (electric); switchgear insulation; China; EHV transmission line; SF6 circuit breaker; UHV transmission line; arc model; beat frequency oscillation; chopping current; equivalent circuit analysis; four-legged reactor interrupting transient; four-legged reactor interruption process; shunt reactor switching overvoltage interruption; voltage 750 kV; Capacitance; Circuit breakers; Inductors; Integrated circuit modeling; Shunts (electrical); Surges; Switches; Arc model; Beat frequency oscillation; Neutral reactor; Shunt reactor interrupting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
Type :
conf
DOI :
10.1109/POWERCON.2014.6993528
Filename :
6993528
Link To Document :
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