Wavelet network-based classification of transients using dominant frequency signature
Electric Power Systems Research, 2008•Elsevier
This paper presents a novel approach of classification of transients resulting from changes
in circuit topology in a radial distribution system. The analysed data are obtained from
experiments as well as simulated model based on Simulink in Matlab environment.
Continuous wavelet transform-based dominant frequency signature (DFS) has been used as
the key features for identification of circuit topological changes. Conclusions have been
drawn after classification of the transients based on DFS using wavelet network.
in circuit topology in a radial distribution system. The analysed data are obtained from
experiments as well as simulated model based on Simulink in Matlab environment.
Continuous wavelet transform-based dominant frequency signature (DFS) has been used as
the key features for identification of circuit topological changes. Conclusions have been
drawn after classification of the transients based on DFS using wavelet network.
This paper presents a novel approach of classification of transients resulting from changes in circuit topology in a radial distribution system. The analysed data are obtained from experiments as well as simulated model based on Simulink in Matlab environment. Continuous wavelet transform-based dominant frequency signature (DFS) has been used as the key features for identification of circuit topological changes. Conclusions have been drawn after classification of the transients based on DFS using wavelet network.
Elsevier
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