DocumentCode
3601940
Title
An Adaptive Reclosure Scheme for Parallel Transmission Lines With Shunt Reactors
Author
Da Lin ; Huifang Wang ; Dongyang Lin ; Benteng He
Author_Institution
Dept. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Volume
30
Issue
6
fYear
2015
Firstpage
2581
Lastpage
2589
Abstract
A new reclosure scheme applied to parallel transmission lines with shunt reactors is proposed to improve the adaptability of the autoreclosure. Detailed analysis of the fault phase voltage is performed to derive the criteria to distinguish the temporary fault from the permanent fault. For different types of ground faults, the integral of the fault phase´s recovery voltage is used to identify the permanent grounded faults. For different types of cross-line ungrounded faults, the integral of the β modulus of the fault phase´s recovery voltage is used to identify the permanent cross-line ungrounded faults. Besides, the phase reclosure sequence principle is used for all fault types. The performance of the proposed scheme is verified by the digital and analog simulation test for a 500-kV parallel transmission line with shunt reactors for several cases on different fault types and fault conditions. The Electromagnetic Transients Program-based and physical analog simulation results show that the proposed scheme is effective.
Keywords
power transmission faults; power transmission lines; Electromagnetic Transients Program; adaptive reclosure scheme; analog simulation test; autoreclosure; cross-line ungrounded faults; digital simulation test; fault conditions; fault phase recovery voltage; fault types; ground faults; parallel transmission lines; permanent fault; phase reclosure sequence principle; physical analog simulation; shunt reactors; temporary fault; voltage 500 kV; Capacitance; Circuit faults; Couplings; Fault diagnosis; Inductors; Power transmission lines; Shunts (electrical); Adaptive reclosure; integral criteria; parallel lines; permanent fault; recovery voltage; relaying protection; shunt reactors; temporary fault;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2015.2416776
Filename
7089305
Link To Document