Title :
Non-fault detection for single-phase reclosure of transmission lines based on fault location
Author :
Shao, Wenquan ; Li, Yanbin ; Liu, Yili ; Zhang, Xiaowei
Author_Institution :
Dept. of Electron. & Inf., Xi´´an Polytech. Univ., Xi´´an, China
Abstract :
It is important to study on non-fault detection before reclosing for single-phase reclosure, which is helpful to lower unsuccessful reclosing rate and meet the increasing requirement on self-healing ability in smart grid. Some researchers have developed single-phase long-hold faults identification criterion based on differential current principle, for the open phases in faulting and non-fault are considered as internal fault and external fault respectively. But the distributed capacitive current compensation is influenced by the fault location. Especially in the case of the fault location near to bus at each side of the transmission line, the capacitive current compensation method is not effective for the distance side. Therefore, a distributed capacitive current compensation based on fault location is discussed for non-fault detection of single-phase reclosure. ATP simulations show that the developed criterion based on fault location is of higher sensitivity and reliability.
Keywords :
compensation; fault location; power transmission faults; power transmission lines; smart power grids; ATP simulations; differential current principle; distributed capacitive current compensation; fault location; nonfault detection; reclosing rate; self-healing ability; single-phase long-hold fault identification criterion; single-phase reclosure; smart grid; transmission lines; Automation; Circuit faults; Fault location; Inductors; Power transmission lines; Shunt (electrical); fault location; non-fault detection; shunt reactors; transmission line;
Conference_Titel :
Power Engineering and Automation Conference (PEAM), 2011 IEEE
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-9691-4
DOI :
10.1109/PEAM.2011.6134974