Time–frequency multiresolution of fault-generated transient signals in transmission lines using a morphological filter

The ongoing transformation of electrical power systems highlights the weaknesses of the protection schemes of traditional devices because they are designed and configured according to traditional characteristics of the system. Therefore, this work proposes a new methodology to study the fault-genera...

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Veröffentlicht in:Protection and control of modern power systems 2023-12, Vol.8 (1), p.22-14, Article 22
Hauptverfasser: Quispe, Juan Carlos, Morales, John, Orduna, Eduardo, Liebermann, Carlo, Bruhns, Michael, Schegner, Peter
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Sprache:eng
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Zusammenfassung:The ongoing transformation of electrical power systems highlights the weaknesses of the protection schemes of traditional devices because they are designed and configured according to traditional characteristics of the system. Therefore, this work proposes a new methodology to study the fault-generated high frequency transient signals in transmission lines through multiresolution analysis. The high frequency components are determined by a new digital filtering technique based on mathematical morphology theory and a spectral energy index. Consequently, wide spectra of signals in the time–frequency domain are obtained. The performance of this method is verified on an electrical power system modeled in ATP-Draw, where simulation and test signals are developed for different locations, fault resistances, inception angles, high frequency noises, sampling frequencies, types of faults, and shapes of the structuring element. The results show the characteristics of the fault such as the traveling wave frequency, location, and starting time.
ISSN:2367-2617
2367-0983
DOI:10.1186/s41601-023-00294-x