DocumentCode :
6635
Title :
A New Transmission Line Pilot Differential Protection Principle Using Virtual Impedance of Fault Component
Author :
Jing Ma ; Xun Pei ; Wei Ma ; Zengping Wang
Author_Institution :
State Key Lab. for Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
Volume :
38
Issue :
1
fYear :
2015
fDate :
winter 2015
Firstpage :
37
Lastpage :
44
Abstract :
A novel line pilot differential protection principle based on the virtual impedance of fault component is proposed in this paper. First, according to the fault component of the measured current and voltage at both line ends, the fault component of the current and voltage at the line midpoint is calculated. Second, the virtual impedance is defined as the calculated voltage fault component divided by the calculated current fault component. And then, according to the two virtual impedances calculated at two line ends, the ratio restraint criterion is formed with the sum of the virtual impedances and the smaller virtual impedance. Finally, by analyzing different characteristics of the criterion in different fault cases, the fault can be identified. Simulation results verify that the proposed method is able to identify different kinds of fault accurately with high sensitivity. It is highly reliable and not affected by the fault location, transition resistance, load current, distributed capacitance, and data synchronization. Even in the case of transitional fault, selectivity can still be guaranteed with the proposed method.
Keywords :
electric impedance; fault location; power transmission faults; power transmission lines; power transmission protection; current fault component; data synchronization; differential protection principle; distributed capacitance; fault location; load current; ratio restraint criterion; transition resistance; transmission line; virtual impedance; voltage fault component; Circuit faults; Fault location; Impedance; Power transmission lines; Resistance; Sensitivity; Differential protection; distribution parameter; fault component; virtual impedance;
fLanguage :
English
Journal_Title :
Electrical and Computer Engineering, Canadian Journal of
Publisher :
ieee
ISSN :
0840-8688
Type :
jour
DOI :
10.1109/CJECE.2014.2356201
Filename :
7072587
Link To Document :
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