High Impedance Fault Detection Protection Scheme for Power Distribution Systems

Author:

Moloi KatlehoORCID,Davidson InnocentORCID

Abstract

Protection schemes are used in safe-guarding and ensuring the reliability of an electrical power network. Developing an effective protection scheme for high impedance fault (HIF) detection remains a challenge in research for protection engineers. The development of an HIF detection scheme has been a subject of interest for many decades and several methods have been proposed to find an optimal solution. The conventional current-based methods have technical limitations to effectively detect and minimize the impact of HIF. This paper presents a protection scheme based on signal processing and machine learning techniques to detect HIF. The scheme employs the discrete wavelet transform (DWT) for signal decomposition and feature extraction and uses the support vector machine (SVM) classifier to effectively detect the HIF. In addition, the decision tree (DT) classifier is implemented to validate the proposed scheme. A practical experiment was conducted to verify the efficiency of the method. The classification results obtained from the scheme indicated an accuracy level of 97.6% and 87% for the simulation and experimental setups. Furthermore, we tested the neural network (NN) and decision tree (DT) classifiers to further validate the proposed method.

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Support Vector Machines for Fault Detection and Classification in Electrical Systems;2024 International Conference on Communication, Computer Sciences and Engineering (IC3SE);2024-05-09

2. A Novel Method to Detect High Impedance Fault in Electric Vehicle Integrated Distribution System;Studies in Computational Intelligence;2024

3. A novel method to detect and classify High Impedance Fault in EV integrated distribution system;2023 IEEE International Conference on Power Electronics, Smart Grid, and Renewable Energy (PESGRE);2023-12-17

4. A Critical Analysis on Different High Impedance Fault Detection Schemes;Electric Power Components and Systems;2023-11-22

5. ML-Based Intermittent Fault Detection, Classification, and Branch Identification in a Distribution Network;Energies;2023-08-17

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