Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations

Electric power transmission networks; Microgrids; Power quality; Renewable energy resources; Small power plants; Smart power grids; Distributed generators; Distribution power systems; Energy management softwares; Mitigation strategy; Renewable energy source; Standards development; Technological adva...

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Main Authors: Alkahtani A.A., Alfalahi S.T.Y., Athamneh A.A., Al-Shetwi A.Q., Mansor M.B., Hannan M.A., Agelidis V.G.
Other Authors: 55646765500
Format: Article
Published: Institute of Electrical and Electronics Engineers Inc. 2023
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spelling my.uniten.dspace-256892023-05-29T16:12:49Z Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations Alkahtani A.A. Alfalahi S.T.Y. Athamneh A.A. Al-Shetwi A.Q. Mansor M.B. Hannan M.A. Agelidis V.G. 55646765500 57218448644 22833538900 57004922700 6701749037 7103014445 7003492499 Electric power transmission networks; Microgrids; Power quality; Renewable energy resources; Small power plants; Smart power grids; Distributed generators; Distribution power systems; Energy management softwares; Mitigation strategy; Renewable energy source; Standards development; Technological advancement; Voltage and current harmonics; Electric power system control A microgrid (MG) is a small-scale power system with a cluster of loads and distributed generators operating together through energy management software and devices that act as a single controllable entity with respect to the grid. MG has become a key research element in smart grid and distribution power systems. MG mainly contains different renewable energy sources (RESs) that use various technological advancements, such as power electronics-based technologies. However, it has an unstable output, thereby causing different types of power quality (PQ) events. As a result, standards and mitigation methods have been developed in recent years. To mitigate PQ issues due to MG integration, various methods and standards have been proposed over the last years. Although these individual methods are well documented, a comparative overview had not been introduced so far. Thus, this study aims to fill the gap by reviewing and comparing the prior-art PQ issues, solutions, and standards in MGs. We compare the main issues related to voltage sag, voltage swell, voltage and current harmonics, system unbalances, and fluctuations to ensure high-quality MG output power. The new technologies associated with MGs generate harmonics emission in the range of 2-150 kHz, thereby causing a new phenomenon, namely, supraharmonics (SH) emission, which is not sufficiently covered in the literature. Therefore, the characteristics, causes, consequences, and measurements of SH are highlighted and analyzed. The mitigation strategies, control, and devices of PQ issues are also discussed. Moreover, a comparison is conducted between the most popular devices used to mitigate the PQ issues in MG in terms of cost, rating, and different aspects of performance. This review study can strengthen the efforts toward the mitigation and standards development of PQ issues in MG applications, especially SH. Finally, some recommendations and suggestions to improve PQ of MG, including SH, are highlighted. � 2013 IEEE. Final 2023-05-29T08:12:48Z 2023-05-29T08:12:48Z 2020 Article 10.1109/ACCESS.2020.3008042 2-s2.0-85089229694 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85089229694&doi=10.1109%2fACCESS.2020.3008042&partnerID=40&md5=6615248801f5b3a36e8f399c212dbf58 https://irepository.uniten.edu.my/handle/123456789/25689 8 9136692 127104 127122 All Open Access, Gold, Green Institute of Electrical and Electronics Engineers Inc. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Electric power transmission networks; Microgrids; Power quality; Renewable energy resources; Small power plants; Smart power grids; Distributed generators; Distribution power systems; Energy management softwares; Mitigation strategy; Renewable energy source; Standards development; Technological advancement; Voltage and current harmonics; Electric power system control
author2 55646765500
author_facet 55646765500
Alkahtani A.A.
Alfalahi S.T.Y.
Athamneh A.A.
Al-Shetwi A.Q.
Mansor M.B.
Hannan M.A.
Agelidis V.G.
format Article
author Alkahtani A.A.
Alfalahi S.T.Y.
Athamneh A.A.
Al-Shetwi A.Q.
Mansor M.B.
Hannan M.A.
Agelidis V.G.
spellingShingle Alkahtani A.A.
Alfalahi S.T.Y.
Athamneh A.A.
Al-Shetwi A.Q.
Mansor M.B.
Hannan M.A.
Agelidis V.G.
Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
author_sort Alkahtani A.A.
title Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
title_short Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
title_full Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
title_fullStr Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
title_full_unstemmed Power Quality in Microgrids including Supraharmonics: Issues, Standards, and Mitigations
title_sort power quality in microgrids including supraharmonics: issues, standards, and mitigations
publisher Institute of Electrical and Electronics Engineers Inc.
publishDate 2023
_version_ 1806428232086454272
score 13.214268