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Source-Independent Fault Detection Method for Transmission Lines in IBR-Dominated Grids

Applied Physics 2024-07-12 v1

Abstract

This paper proposes a source-independent method for the detection and classification of faults along Transmission Lines (TLs). It aims to reduce the protection issues arising from Inverter-Based Resources (IBRs). Inspired by Power Line Communication (PLC), the proposed method utilizes high-frequency carrier waves which are sent from either side of a TL over each phase. As faults disrupt the propagation of carriers, the receiving carrier waves before and during faults exhibit differences. Based on this principle, the proposed method continuously compares the receiving carrier waves with a short history of them to detect and classify faults. The performance of the proposed method was evaluated using EMTP-RV and MATLAB, and compared to traditional phasor-based distance relays. The simulation results confirm the capability of the proposed method in detection and classification of different faults regardless of power sources types.

Keywords

Cite

@article{arxiv.2407.08611,
  title  = {Source-Independent Fault Detection Method for Transmission Lines in IBR-Dominated Grids},
  author = {Julio Rodriguez and Isaac Kofi Otchere and Reza Jalilzadeh Hamidi},
  journal= {arXiv preprint arXiv:2407.08611},
  year   = {2024}
}

Comments

5 pages. This is the preprint of a conference paper which is accepted for presentation at IEEE PES-GM2024. Based on the IEEE regulations, publishing preprints without the full format of IEEE (index number, DOI, etc) is allowed

R2 v1 2026-06-28T17:37:33.613Z