Islanding Detection of IEEE 13 Bus System Based on Sequence Components

Islanding recognition in microgrids is crucial for enhancing power system safety and efficiency. This article presents a novel passive islanding recognition technique for grid integrated renewable Distributed Generation (DG) network. This approach is based on current and voltage disturbances at the...

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Main Author: P. Prudvi Raj
Format: Article
Language:English
Published: International Transactions on Electrical Engineering and Computer Science 2023-06-01
Series:International Transactions on Electrical Engineering and Computer Science
Subjects:
Online Access:https://iteecs.com/index.php/iteecs/article/view/48
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author P. Prudvi Raj
author_facet P. Prudvi Raj
author_sort P. Prudvi Raj
collection DOAJ
description Islanding recognition in microgrids is crucial for enhancing power system safety and efficiency. This article presents a novel passive islanding recognition technique for grid integrated renewable Distributed Generation (DG) network. This approach is based on current and voltage disturbances at the moment of islanding. The islanding recognition method is based on the sequence analyzers connected with the point of common coupling (PCC). The suggested method is suitable for estimating the islanding situation in a 0% active power mismatch. The system created in this islanding work is a perfect 13 bus system. It has been tested for a variety of non-islanding circumstances. A microgrid network is simulated using the MATLAB R2016a software.
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spelling doaj.art-4ecf240767454578b6e82a16797971c22023-12-29T04:46:17ZengInternational Transactions on Electrical Engineering and Computer ScienceInternational Transactions on Electrical Engineering and Computer Science2583-64712023-06-012248Islanding Detection of IEEE 13 Bus System Based on Sequence ComponentsP. Prudvi Raj0Department of Computer Science, Auburn University at Montgomery, Montgomery, AL 36117, United States Islanding recognition in microgrids is crucial for enhancing power system safety and efficiency. This article presents a novel passive islanding recognition technique for grid integrated renewable Distributed Generation (DG) network. This approach is based on current and voltage disturbances at the moment of islanding. The islanding recognition method is based on the sequence analyzers connected with the point of common coupling (PCC). The suggested method is suitable for estimating the islanding situation in a 0% active power mismatch. The system created in this islanding work is a perfect 13 bus system. It has been tested for a variety of non-islanding circumstances. A microgrid network is simulated using the MATLAB R2016a software. https://iteecs.com/index.php/iteecs/article/view/48Islanding detectionNon detection zoneMicro gridFault analysisPower quality
spellingShingle P. Prudvi Raj
Islanding Detection of IEEE 13 Bus System Based on Sequence Components
International Transactions on Electrical Engineering and Computer Science
Islanding detection
Non detection zone
Micro grid
Fault analysis
Power quality
title Islanding Detection of IEEE 13 Bus System Based on Sequence Components
title_full Islanding Detection of IEEE 13 Bus System Based on Sequence Components
title_fullStr Islanding Detection of IEEE 13 Bus System Based on Sequence Components
title_full_unstemmed Islanding Detection of IEEE 13 Bus System Based on Sequence Components
title_short Islanding Detection of IEEE 13 Bus System Based on Sequence Components
title_sort islanding detection of ieee 13 bus system based on sequence components
topic Islanding detection
Non detection zone
Micro grid
Fault analysis
Power quality
url https://iteecs.com/index.php/iteecs/article/view/48
work_keys_str_mv AT pprudviraj islandingdetectionofieee13bussystembasedonsequencecomponents