Feras Alasali
The recent development of protection coordination schemes based on inverse of AC microgrid: A review
Alasali, Feras; Mustafa, Haytham; Saidi, Abdelaziz Salah; El‐Naily, Naser; Abeid, Salima; Holderbaum, William; Omran, Emad; Saad, Saad M.
Authors
Haytham Mustafa
Abdelaziz Salah Saidi
Naser El‐Naily
Salima Abeid
Prof William Holderbaum W.Holderbaum@salford.ac.uk
Professor
Emad Omran
Saad M. Saad
Abstract
Integration of distributed generation systems and diversity of microgrid operations led to a change in the structure of the power system. Due to this conversion, new challenges have arisen when employing traditional overcurrent protection schemes. As a consequence, non‐classical protection schemes have attracted significant attention in the last few years. Engineers and scholars have proposed different non‐standard methods to increase the power protection system and ensure the highly selectivity performance. Although the non‐standard characteristics and their requirements, in general, have been outlined and analyzed in the available literature, protection coordination based on voltage current–time inverse, as a branch of non‐standard optimization methods, has not yet been thoroughly discussed, compared, or debated in detail. To close this gap, this review introduces a broad overview of recent research and developments of the voltage current–time inverse based protection coordination. Focuses on assessing the potential advantages and disadvantages of related studies and provide a classification and analysis of these studies. The future trends and some recommendations have been included in this review for improving fault detection sensitivity and coordination reliability.
Citation
Alasali, F., Mustafa, H., Saidi, A. S., El‐Naily, N., Abeid, S., Holderbaum, W., …Saad, S. M. (in press). The recent development of protection coordination schemes based on inverse of AC microgrid: A review. IET Generation, Transmission and Distribution, https://doi.org/10.1049/gtd2.13074
Journal Article Type | Article |
---|---|
Acceptance Date | Nov 24, 2023 |
Online Publication Date | Dec 6, 2023 |
Deposit Date | Dec 13, 2023 |
Publicly Available Date | Dec 13, 2023 |
Journal | IET Generation, Transmission & Distribution |
Print ISSN | 1751-8687 |
Publisher | Wiley Open Access |
Peer Reviewed | Peer Reviewed |
DOI | https://doi.org/10.1049/gtd2.13074 |
Keywords | micro grids, overcurrent protection |
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Publisher Licence URL
http://creativecommons.org/licenses/by-nd/4.0/
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