A Study on Fault Localization Method of Three-Terminal Multi-Section Overhead Line–Cable Hybrid Line Using MEEMD Combined with Teager Energy Operator Algorithm

Author:

Cao Wensi1ORCID,Zhang Fuqian1,Chen Xi2,Zhang Bin1,Li Jifang1,Xu Mingming3

Affiliation:

1. School of Electrical Engineering, North China University of Water Resources and Electric Power, Zhengzhou 450045, China

2. State Grid Sichuan Electric Power Company Meishan Power Supply Company, Chengdu 610041, China

3. State Grid Henan Electric Power Company Electric Power Scientific Research Institute, Zhengzhou 450052, China

Abstract

An improved fault localization method combining total aggregate empirical modal decomposition (MEEMD) and Teager energy operator (TEO) is proposed to address the fault localization issue of three-terminal multi-segment overhead line–cable hybrid transmission lines. This method solves the fault localization problem caused by wave impedance discontinuity in hybrid lines. First, the MEEMD algorithm, which improves modal aliasing, and the Teager energy operator, which reflects transient energy changes, are combined for the accurate detection of faulty traveling wave heads. The fault line section determination condition within the fault branch is used to determine the overhead line section or cable section where the fault is located after determining the faulty branch line. This condition is based on the time difference between the initial traveling wave of the fault arriving at each end measurement point and the T-node. Ultimately, the fault distance is determined using the double-ended traveling wave technique. By combining PSCAD and MATLAB for simulation verification, the accuracy of the ranging method is compared and analyzed, and the results show that the method is able to ensure the accuracy of ranging at different fault locations and transition resistances. Additionally, the localization error is basically kept within 30 m, which significantly improves the accuracy of fault localization.

Funder

Henan Province

Publisher

MDPI AG

Reference26 articles.

1. A power cable fault location method based on Hilbert-Huang transform;Liao;Power Syst. Prot. Control,2017

2. Real-Time Traveling Wave-Based Fault Location Using Two-Terminal Unsynchronized Data;Lopes;IEEE Trans. Power Deliv.,2015

3. Accurate Two-Terminal Transmission Line Fault Location Using Traveling Waves;Lopes;IEEE Trans. Power Deliv.,2017

4. Single phase to ground fault location method of an overhead line based on magnetic field detection and multi-criteria fusion;Guo;Power Syst. Prot. Control,2022

5. Research on an improved double-terminal traveling wave fault location method for UHVDC project;Sun;Power Syst. Prot. Control,2020

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