Title :
A least error squares method for locating fault on coupled double-circuit HV transmission line using one terminal data
Author :
Hongchun, Shu ; Dajun, Si ; Yaozhong, Ge ; Xunyun, Chen
Author_Institution :
Kunming Univ. of Sci. & Technol., China
Abstract :
The arcing fault has a high probability of occurence on a HV transmission line. To date, the transient resistance is always assumed as a linear constant resistance in most of the locating algorithms. On the basis of the previous achievements in arc modeling, the paper describes an ideal voltage-current transform characteristic relationship and its equivalent circuit representing for long arc, and then presents a novel short time-window method for locating arcing faults on coupled double-circuit HV transmission line using one-terminal voltage and current samples. The method proposed has the advantages as follows: (1) arcing discharge is taken into account; (2) CT saturation is considered for a short time-window, which can be chosen from the initial time of a fault, less than half period; and (3) far-terminal equivalent impedance is not required. Moreover, the requirement of high accuracy to fault location is ensured by using the least error squares method. A lot of digital simulation shows that the scheme is feasible. The method has been applied to Kunming electric network.
Keywords :
arcs (electric); fault location; least squares approximations; power transmission faults; power transmission lines; power transmission protection; HV transmission line; Kunming electric network; coupled double-circuit HV transmission line; current transformer saturation; digital simulation; equivalent circuit; fault location; least error squares method; linear constant resistance; one terminal data; short time-window method; transient resistance; voltage-current transform characteristic relationship; Circuit faults; Coupling circuits; Distributed parameter circuits; Equivalent circuits; Fault currents; Fault location; Impedance; Power system transients; Transmission lines; Voltage;
Conference_Titel :
Power System Technology, 2002. Proceedings. PowerCon 2002. International Conference on
Print_ISBN :
0-7803-7459-2
DOI :
10.1109/ICPST.2002.1047152