You are in:Home/Publications/Integrated Discrete Wavelet Transform-Based Faulted Phase Identification for Multi-Terminals Power Systems

Ass. Lect. Mohamed Ibrahim Zaki Amer :: Publications:

Title:
Integrated Discrete Wavelet Transform-Based Faulted Phase Identification for Multi-Terminals Power Systems
Authors: Mohamed I. Zaki1, Ragab A. El Sehiemy, Ghada M. Amer, Fathy M. Abo El Enin
Year: 2018
Keywords: fault detection – fault classification – protection system – multi-terminals power system – backup protection – discrete wavelet transform (DWT) – three terminal circuits.
Journal: 2017 Nineteenth International Middle East Power Systems Conference (MEPCON)
Volume: Not Available
Issue: Not Available
Pages: 7
Publisher: IEEE
Local/International: International
Paper Link:
Full paper Mohamed Ibrahim Zaki Amer_110 mepcon.doc
Supplementary materials Not Available
Abstract:

This paper proposes a novel fault identification algorithm for an electrical multi-terminals network. The Discrete Wavelet Transform (DWT) is used to decompose current signals. The purposed algorithm designs to be algorithm able to detect and classify various fault types at any point on the multi-terminals system. Using the current signals only that are captured from single ended of multi-terminals configuration, which consists of three terminal circuits. The ATP/EMTP simulator is developed to evaluate the capability of the proposed algorithm. In addition, the proposed algorithm is applied to simulated parameters that are taken from Egyptian electrical grid, which comprises of three terminal circuits connected as ring configuration. Also, it considered the future installation of El Dabaa nuclear power station. The proposed algorithm achieves accurate results under numerous conditions such as different fault resistances, locations and inception angles.

Google ScholarAcdemia.eduResearch GateLinkedinFacebookTwitterGoogle PlusYoutubeWordpressInstagramMendeleyZoteroEvernoteORCIDScopus