TY - JOUR
T1 - Novel distance protection based on distributed parameter model for long-distance transmission lines
AU - Song, Guobing
AU - Chu, Xu
AU - Gao, Shuping
AU - Kang, Xiaoning
AU - Jiao, Zaibin
AU - Suonan, Jiale
PY - 2013
Y1 - 2013
N2 - Traditional distance protections mainly use a lumped parameter model and perform poorly under high-resistance ground fault and/or for long-distance transmission line. In order to overcome the defects, this paper presents a new distance protection method, which is developed based on the distributed- parameter transmission-line model and can distinguish internal faults from external faults based on the trend of the voltage distribution in the neighborhood of the setting point of protection. The criterion of this new distance protection is also put forward. The effectiveness of the proposed method and the error involved are discussed in detail. This new distance protection is simple in principle and easy to implement. In addition, without having to calculate the voltage distribution along the entire line, this algorithm has low computational complexity. In particular, the proposed distance protection still operates correctly under high-transition-resistance faults. Both simulations in distributed parameter transmission-line models and 750-kV power-line field data have demonstrated validity and feasibility of the proposed protection method.
AB - Traditional distance protections mainly use a lumped parameter model and perform poorly under high-resistance ground fault and/or for long-distance transmission line. In order to overcome the defects, this paper presents a new distance protection method, which is developed based on the distributed- parameter transmission-line model and can distinguish internal faults from external faults based on the trend of the voltage distribution in the neighborhood of the setting point of protection. The criterion of this new distance protection is also put forward. The effectiveness of the proposed method and the error involved are discussed in detail. This new distance protection is simple in principle and easy to implement. In addition, without having to calculate the voltage distribution along the entire line, this algorithm has low computational complexity. In particular, the proposed distance protection still operates correctly under high-transition-resistance faults. Both simulations in distributed parameter transmission-line models and 750-kV power-line field data have demonstrated validity and feasibility of the proposed protection method.
KW - Distance protection
KW - distributed parameter model
KW - transition resistance
KW - voltage distribution
UR - https://www.scopus.com/pages/publications/84885595671
U2 - 10.1109/TPWRD.2013.2251370
DO - 10.1109/TPWRD.2013.2251370
M3 - 文章
AN - SCOPUS:84885595671
SN - 0885-8977
VL - 28
SP - 2116
EP - 2123
JO - IEEE Transactions on Power Delivery
JF - IEEE Transactions on Power Delivery
IS - 4
M1 - 6595648
ER -