DocumentCode :
2891840
Title :
Artificial neural network approach to single-ended fault locator for transmission lines
Author :
Chen, Zhihong ; Maun, Jean-Claud
Author_Institution :
Dept. of Electr. Eng., Free Univ. of Brussels, Belgium
fYear :
1997
fDate :
11-16 May 1997
Firstpage :
125
Lastpage :
131
Abstract :
This paper describes the application of an artificial neural network-based algorithm to the single-ended fault location of transmission lines using voltage and current data. From the fault location equations, similar to the conventional approach, this method selects phasors of prefault and superimposed voltages and currents from all phases of the transmission line as inputs of the artificial neural network. The outputs of the neural network are the fault position and the fault resistance. With its function approximation ability, the neural network is trained to map the nonlinear relationship existing in the fault location equations with the distributed parameter line model. It can get both fast speed and high accuracy. The influence of the remote-end infeed on neural network structure is studied. A comparison with the conventional method has been done. It is shown that the neural network-based method can adapt itself to big variations of source impedances at the remote terminal. Finally, when the remote source impedances vary in small ranges, the structure of the artificial neural network has been optimized by the pruning method
Keywords :
electric impedance; fault location; neural nets; power system analysis computing; power transmission lines; artificial neural network; current data; distributed parameter line model; fault position; fault resistance; function approximation ability; neural network structure; nonlinear relationship mapping; prefault currents; prefault voltages; remote-end infeed; single-ended fault locator; source impedances; superimposed currents; superimposed voltages; transmission lines; voltage data; Admittance; Artificial neural networks; Fault location; Frequency; Function approximation; Impedance; Nonlinear equations; Transmission line matrix methods; Transmission lines; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Industry Computer Applications., 1997. 20th International Conference on
Conference_Location :
Columbus, OH
Print_ISBN :
0-7803-3713-1
Type :
conf
DOI :
10.1109/PICA.1997.599387
Filename :
599387
Link To Document :
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