Modified multimachine power system design with DFIG-WECS and damping controller
Rotor angle stability, which involves electromechanical oscillation damping and control, is very important in maintaining the stability of modern power grid systems. Renewable energy sources like wind energy are undergoing massive integration into modern power grid systems to meet energy demands and...
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| Format: | Article |
| Language: | English |
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Multidisciplinary Digital Publishing Institute (MDPI)
2024
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| Online Access: | http://psasir.upm.edu.my/id/eprint/111505/ http://psasir.upm.edu.my/id/eprint/111505/1/energies-17-01841-v2%20%281%29.pdf |
| _version_ | 1848865705616736256 |
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| author | Sabo, Aliyu Odoh, Theophilus Ebuka Veerapandiyan, Veerasamy Abdul Wahab, Noor Izzri |
| author_facet | Sabo, Aliyu Odoh, Theophilus Ebuka Veerapandiyan, Veerasamy Abdul Wahab, Noor Izzri |
| author_sort | Sabo, Aliyu |
| building | UPM Institutional Repository |
| collection | Online Access |
| description | Rotor angle stability, which involves electromechanical oscillation damping and control, is very important in maintaining the stability of modern power grid systems. Renewable energy sources like wind energy are undergoing massive integration into modern power grid systems to meet energy demands and decarbonize power grid systems of carbon emissions from fossil fuel generators. To enable increased integration of wind renewable energy sources, precise models are needed for research and analytical purposes. Wind renewable energy is generated through a wind energy conversion system (WECS); one such conversion system is the doubly fed induction generator (DFIG) system. In this study, a precise model of a DFIG-WECS was modeled and integrated into the IEEE’s two-area Kundur power test system, which represents the available power grid system, and is also a multimachine power system using the Matlab/Simulink 2023 software. A damping controller known as the power system stabilizer (PSS), whose optimal parameters were obtained using artificial eco-system optimization (AEO), was also incorporated into the integrated power grid system to control and damp electromechanical oscillations. The results showed that the PSS damping controller effectively damped electromechanical oscillations in the integrated power grid system. |
| first_indexed | 2025-11-15T14:08:57Z |
| format | Article |
| id | upm-111505 |
| institution | Universiti Putra Malaysia |
| institution_category | Local University |
| language | English |
| last_indexed | 2025-11-15T14:08:57Z |
| publishDate | 2024 |
| publisher | Multidisciplinary Digital Publishing Institute (MDPI) |
| recordtype | eprints |
| repository_type | Digital Repository |
| spelling | upm-1115052024-08-04T10:31:05Z http://psasir.upm.edu.my/id/eprint/111505/ Modified multimachine power system design with DFIG-WECS and damping controller Sabo, Aliyu Odoh, Theophilus Ebuka Veerapandiyan, Veerasamy Abdul Wahab, Noor Izzri Rotor angle stability, which involves electromechanical oscillation damping and control, is very important in maintaining the stability of modern power grid systems. Renewable energy sources like wind energy are undergoing massive integration into modern power grid systems to meet energy demands and decarbonize power grid systems of carbon emissions from fossil fuel generators. To enable increased integration of wind renewable energy sources, precise models are needed for research and analytical purposes. Wind renewable energy is generated through a wind energy conversion system (WECS); one such conversion system is the doubly fed induction generator (DFIG) system. In this study, a precise model of a DFIG-WECS was modeled and integrated into the IEEE’s two-area Kundur power test system, which represents the available power grid system, and is also a multimachine power system using the Matlab/Simulink 2023 software. A damping controller known as the power system stabilizer (PSS), whose optimal parameters were obtained using artificial eco-system optimization (AEO), was also incorporated into the integrated power grid system to control and damp electromechanical oscillations. The results showed that the PSS damping controller effectively damped electromechanical oscillations in the integrated power grid system. Multidisciplinary Digital Publishing Institute (MDPI) 2024-04-11 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/111505/1/energies-17-01841-v2%20%281%29.pdf Sabo, Aliyu and Odoh, Theophilus Ebuka and Veerapandiyan, Veerasamy and Abdul Wahab, Noor Izzri (2024) Modified multimachine power system design with DFIG-WECS and damping controller. Energies, 17 (8). pp. 1-22. ISSN 1996-1073 https://www.mdpi.com/1996-1073/17/8/1841 10.3390/en17081841 |
| spellingShingle | Sabo, Aliyu Odoh, Theophilus Ebuka Veerapandiyan, Veerasamy Abdul Wahab, Noor Izzri Modified multimachine power system design with DFIG-WECS and damping controller |
| title | Modified multimachine power system design with DFIG-WECS and damping controller |
| title_full | Modified multimachine power system design with DFIG-WECS and damping controller |
| title_fullStr | Modified multimachine power system design with DFIG-WECS and damping controller |
| title_full_unstemmed | Modified multimachine power system design with DFIG-WECS and damping controller |
| title_short | Modified multimachine power system design with DFIG-WECS and damping controller |
| title_sort | modified multimachine power system design with dfig-wecs and damping controller |
| url | http://psasir.upm.edu.my/id/eprint/111505/ http://psasir.upm.edu.my/id/eprint/111505/ http://psasir.upm.edu.my/id/eprint/111505/ http://psasir.upm.edu.my/id/eprint/111505/1/energies-17-01841-v2%20%281%29.pdf |