LAPSE:2023.13299v1
Published Article

LAPSE:2023.13299v1
Mitigation of Low-Frequency Oscillation in Power Systems through Optimal Design of Power System Stabilizer Employing ALO
March 1, 2023
Abstract
Low-frequency oscillations are an inevitable phenomenon of a power system. This paper proposes an Ant lion optimization approach to optimize the dual-input power system stabilizer (PSS2B) parameters to enhance the transfer capability of the 400 kV line in the North-West region of the Ethiopian electric network by the damping of low-frequency oscillation. Double-input Power system stabilizers (PSSs) are currently used in power systems to damp out low-frequency oscillations. The gained minimum damping ratio and eigenvalue results of the proposed Ant lion algorithm (ALO) approach are compared with the existing conventional system to get better efficiency at various loading conditions. Additionally, the proposed Ant lion optimization approach requires minimal time to estimate the key parameters of the power oscillation damper (POD). Consequently, the average time taken to optimally size the parameters of the PSS controller was 14.6 s, which is pretty small and indicates real-time implementation of an ALO developed model. The nonlinear equations that represent the system have been linearized and then placed in state-space form in order to study and analyze the dynamic performance of the system by damping out low-frequency oscillation problems. Finally, conventional fixed-gain PSS improves the maximum overshoot by 5.2% and settling time by 51.4%, but the proposed optimally sized PSS employed with the ALO method had improved the maximum overshoot by 16.86% and settling time by 78.7%.
Low-frequency oscillations are an inevitable phenomenon of a power system. This paper proposes an Ant lion optimization approach to optimize the dual-input power system stabilizer (PSS2B) parameters to enhance the transfer capability of the 400 kV line in the North-West region of the Ethiopian electric network by the damping of low-frequency oscillation. Double-input Power system stabilizers (PSSs) are currently used in power systems to damp out low-frequency oscillations. The gained minimum damping ratio and eigenvalue results of the proposed Ant lion algorithm (ALO) approach are compared with the existing conventional system to get better efficiency at various loading conditions. Additionally, the proposed Ant lion optimization approach requires minimal time to estimate the key parameters of the power oscillation damper (POD). Consequently, the average time taken to optimally size the parameters of the PSS controller was 14.6 s, which is pretty small and indicates real-time implementation of an ALO developed model. The nonlinear equations that represent the system have been linearized and then placed in state-space form in order to study and analyze the dynamic performance of the system by damping out low-frequency oscillation problems. Finally, conventional fixed-gain PSS improves the maximum overshoot by 5.2% and settling time by 51.4%, but the proposed optimally sized PSS employed with the ALO method had improved the maximum overshoot by 16.86% and settling time by 78.7%.
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Keywords
ant lion optimization, low-frequency oscillations, power oscillation damper, power system stabilizer
Subject
Suggested Citation
Bayu ES, Khan B, Ali ZM, Alaas ZM, Mahela OP. Mitigation of Low-Frequency Oscillation in Power Systems through Optimal Design of Power System Stabilizer Employing ALO. (2023). LAPSE:2023.13299v1
Author Affiliations
Bayu ES: Department of Electrical and Computer Engineering, Hawassa University, Hawassa P.O. Box 05, Ethiopia [ORCID]
Khan B: Department of Electrical and Computer Engineering, Hawassa University, Hawassa P.O. Box 05, Ethiopia [ORCID]
Ali ZM: College of Engineering at Wadi Addawasir, Prince Sattam Bin Abdulaziz University, Wadi Addawasir 11991, Saudi Arabia; Electrical Engineering Deptartment, Faculty of Engineering, Aswan University, Aswan 81542, Egypt [ORCID]
Alaas ZM: Electrical Engineering Department, College of Engineering, Jazan University, Jazan 45142, Saudi Arabia [ORCID]
Mahela OP: Power System Planning Division, Rajasthan Rajya Vidyut Prasaran Nigam Ltd., Jaipur 302005, India [ORCID]
Khan B: Department of Electrical and Computer Engineering, Hawassa University, Hawassa P.O. Box 05, Ethiopia [ORCID]
Ali ZM: College of Engineering at Wadi Addawasir, Prince Sattam Bin Abdulaziz University, Wadi Addawasir 11991, Saudi Arabia; Electrical Engineering Deptartment, Faculty of Engineering, Aswan University, Aswan 81542, Egypt [ORCID]
Alaas ZM: Electrical Engineering Department, College of Engineering, Jazan University, Jazan 45142, Saudi Arabia [ORCID]
Mahela OP: Power System Planning Division, Rajasthan Rajya Vidyut Prasaran Nigam Ltd., Jaipur 302005, India [ORCID]
Journal Name
Energies
Volume
15
Issue
10
First Page
3809
Year
2022
Publication Date
2022-05-22
ISSN
1996-1073
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PII: en15103809, Publication Type: Journal Article
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LAPSE:2023.13299v1
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https://doi.org/10.3390/en15103809
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