Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators

Occurrences of disturbance affect the rotor angle operation of a synchronous generator in the generation system of a power system. The disturbance will disrupt the synchronous generator's rotor oscillation and result in rotor angle instability, which will degrade the power system's perform...

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Published in:International Journal of Electrical and Computer Engineering
Main Author: Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
Format: Article
Language:English
Published: Institute of Advanced Engineering and Science 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201051734&doi=10.11591%2fijece.v14i5.pp4879-4887&partnerID=40&md5=8b26c93707b33f9486b43fbffff713c4
id 2-s2.0-85201051734
spelling 2-s2.0-85201051734
Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
2024
International Journal of Electrical and Computer Engineering
14
5
10.11591/ijece.v14i5.pp4879-4887
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201051734&doi=10.11591%2fijece.v14i5.pp4879-4887&partnerID=40&md5=8b26c93707b33f9486b43fbffff713c4
Occurrences of disturbance affect the rotor angle operation of a synchronous generator in the generation system of a power system. The disturbance will disrupt the synchronous generator's rotor oscillation and result in rotor angle instability, which will degrade the power system's performance. This paper aims to develop a Lyapunov-based rotor angle deviation regulator for the nonlinear swing equation of a synchronous generator. The proposed regulator is expected to assure asymptotic stability of the rotor angle and robustness to uncertainty. Backstepping and Lyapunov redesign techniques are employed in developing the regulator. To validate the effectiveness and robustness of the regulator, a simulation in MATLAB/Simulink is carried out. The simulation result shows that the asymptotic stability and robustness of the regulator are guaranteed regardless of the disturbance. © 2024 Institute of Advanced Engineering and Science. All rights reserved.
Institute of Advanced Engineering and Science
20888708
English
Article

author Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
spellingShingle Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
author_facet Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
author_sort Murad N.S.F.M.; Kamarudin M.N.; Zakaria M.I.
title Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
title_short Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
title_full Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
title_fullStr Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
title_full_unstemmed Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
title_sort Rotor angle deviation regulator to enhance the rotor angle stability of synchronous generators
publishDate 2024
container_title International Journal of Electrical and Computer Engineering
container_volume 14
container_issue 5
doi_str_mv 10.11591/ijece.v14i5.pp4879-4887
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85201051734&doi=10.11591%2fijece.v14i5.pp4879-4887&partnerID=40&md5=8b26c93707b33f9486b43fbffff713c4
description Occurrences of disturbance affect the rotor angle operation of a synchronous generator in the generation system of a power system. The disturbance will disrupt the synchronous generator's rotor oscillation and result in rotor angle instability, which will degrade the power system's performance. This paper aims to develop a Lyapunov-based rotor angle deviation regulator for the nonlinear swing equation of a synchronous generator. The proposed regulator is expected to assure asymptotic stability of the rotor angle and robustness to uncertainty. Backstepping and Lyapunov redesign techniques are employed in developing the regulator. To validate the effectiveness and robustness of the regulator, a simulation in MATLAB/Simulink is carried out. The simulation result shows that the asymptotic stability and robustness of the regulator are guaranteed regardless of the disturbance. © 2024 Institute of Advanced Engineering and Science. All rights reserved.
publisher Institute of Advanced Engineering and Science
issn 20888708
language English
format Article
accesstype
record_format scopus
collection Scopus
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