Title :
An adaptive single phase reclosing algorithm based on the mathematical morphology
Author :
Zheng, Tao ; Liu, Min ; Preston, Gary ; Terzija, V.V.
Author_Institution :
North China Electr. Power Univ., Beijing, China
Abstract :
Single-phase Auto-reclosing (SPAR) is widely used on EHV/UHV transmission lines to improve power system reliability. However, reclosing on to a permanent fault can adversely affect the system stability and damage generators and other equipment connected to the line. To solve this problem, a new algorithm for improving the single-phase adaptive autoreclosure is presented in this paper. Firstly, primary and secondary arc models are introduced, then a series of simulations are carried out based on the arc models. By analyzing the simulation results, a new method to discriminate between transient faults and permanent faults is proposed. Since fault arcs are associated with transient faults, and the frequent re-ignitions of the secondary arc cause distortions in the line voltage, a reliable single-phase autoreclosure can be achieved by measuring the distortion in the line voltage waveform. In order to improve the distortion detection, Multi-resolution Morphological Gradient (MMG) has been adopted. Finally, numerous simulation results show that the algorithm proposed in this paper can be used as an effective tool for realizing the SPAR.
Keywords :
arcs (electric); gradient methods; mathematical morphology; power transmission faults; power transmission lines; power transmission reliability; EHV transmission lines; UHV transmission lines; adaptive single phase reclosing; distortion detection; mathematical morphology; multi-resolution morphological gradient; permanent faults; power system reliability; primary arc models; secondary arc models; single-phase adaptive autoreclosure; transient faults; Circuit faults; Mathematical model; Power transmission lines; Transient analysis; Voltage measurement; Single-phase autoreclosure; arc models; multi-resolution morphological gradient; transient fault;
Conference_Titel :
Critical Infrastructure (CRIS), 2010 5th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-8080-7
DOI :
10.1109/CRIS.2010.5617548