Title :
Neural networks to analyze surface tracking on solid insulators
Author :
Ugur, M. ; Auckland, D.W. ; Varlow, B.R. ; Emin, Z.
Author_Institution :
Div. of Electr. Eng., Manchester Univ., UK
fDate :
12/1/1997 12:00:00 AM
Abstract :
Surface tracking on solid insulators is one of the most severe breakdown mechanisms associated with polymeric materials under long term service conditions. A wide range of relays can detect failure in a transmission line and prevent a total breakdown in the systems, but due to the non-healing characteristics of solid insulators, in most cases it might be too late to save the insulator after tracking initiation and growth. The method described here is employed mainly in detecting several conditions, such as discharges, leakage current, dry conditions, severe damage and tracking initiation. Initially a BPN (back propagation network) type NN (neural network) is trained with different signal types. Due to the nature of NN, which always require similar values of input nodes, the system uses the FFT (fast Fourier transform) of the input signal, which might have high amplitude frequency components other than the fundamental frequency depending an the condition of the surface. The system works on a real time basis and warns the user with the first indication of severe damage on the surface and can protect the insulator from excessive damage
Keywords :
backpropagation; electric breakdown; failure analysis; fast Fourier transforms; insulator testing; leakage currents; organic insulating materials; polymer insulators; power engineering computing; real-time systems; signal processing; signal processing equipment; surface discharges; FFT; IEC587 inclined plane tracking test; back propagation network; breakdown mechanisms; discharges; dry conditions; failure detection; high amplitude frequency components; insulator protection; leakage current; long term service conditions; neural network training; nonhealing characteristics; polyester resin; polymeric materials; real time basis; severe damage; signal processing; solid insulators; surface tracking analysis; tracking initiation; Electric breakdown; Frequency; Insulation life; Leak detection; Neural networks; Plastic insulation; Polymers; Relays; Solids; Transmission lines;
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on