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12-06-2024 | Original Paper

A non-contact current traveling wave fault location method for multi-terminal overhead power lines based on adaptive mathematical morphology

Authors: Patrick N. Ayambire, Qi Huang, Albert K. Awopone, Li Jian, Paul O. K. Anane, Olusola Bamisile, Zhenyuan Zhang

Published in: Electrical Engineering | Issue 1/2025

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Abstract

The article presents a novel fault location method for multi-terminal overhead power lines based on adaptive mathematical morphology. It addresses the challenges of existing fault location methods, such as impedance-based and artificial intelligence-based approaches, by introducing a non-contact measuring method that uses magnetic flux density and initial current traveling waves. The method employs a tunnel magnetoresistive sensor for flux density extraction and adaptive mathematical morphology for accurate arrival time detection of the initial current traveling waves. The proposed approach is validated through simulations, demonstrating its effectiveness in identifying fault zones, branches, and points in various fault scenarios. The article highlights the advantages of the adaptive mathematical morphology method in terms of computational efficiency and accuracy, making it a promising solution for enhancing the safety and reliability of power systems.

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Metadata
Title
A non-contact current traveling wave fault location method for multi-terminal overhead power lines based on adaptive mathematical morphology
Authors
Patrick N. Ayambire
Qi Huang
Albert K. Awopone
Li Jian
Paul O. K. Anane
Olusola Bamisile
Zhenyuan Zhang
Publication date
12-06-2024
Publisher
Springer Berlin Heidelberg
Published in
Electrical Engineering / Issue 1/2025
Print ISSN: 0948-7921
Electronic ISSN: 1432-0487
DOI
https://doi.org/10.1007/s00202-024-02495-5