Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer

This study describes the process of interconnected multi-machine power system stabilizer (PSS) optimization using a new intelligent technique called farmland fertility algorithm (FFA) to increase the stability of IEEE three machine nine bus power system and offset the low-frequency oscillations (LFO...

Full description

Saved in:
Bibliographic Details
Main Authors: Sabo, Aliyu, Abdul Wahab, Noor Izzri, Othman, Mohammad Lutfi, Mohd Jaffar, Mai Zurwatul Ahlam, Beiranvand, Hamzeh
Format: Article
Language:English
Published: ARQII Publication 2020
Online Access:http://psasir.upm.edu.my/id/eprint/88998/1/FARM.pdf
http://psasir.upm.edu.my/id/eprint/88998/
http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/129
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.upm.eprints.88998
record_format eprints
spelling my.upm.eprints.889982021-10-04T21:44:18Z http://psasir.upm.edu.my/id/eprint/88998/ Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer Sabo, Aliyu Abdul Wahab, Noor Izzri Othman, Mohammad Lutfi Mohd Jaffar, Mai Zurwatul Ahlam Beiranvand, Hamzeh This study describes the process of interconnected multi-machine power system stabilizer (PSS) optimization using a new intelligent technique called farmland fertility algorithm (FFA) to increase the stability of IEEE three machine nine bus power system and offset the low-frequency oscillations (LFOs) during a symmetrical 100 ms three-phase fault at bus 9. The FFA-PSS controller performance is compared with two familiar classical techniques, i.e. Genetic Algorithm (GA-PSS) and Particle Swarm Optimization (PSO-PSS) to confirm the capability of the proposed technique to realize improved system stability enhancement. The Eigenvalue simulation results with FFA produce stable Eigenvalues that increase the damping ratio of the Electromechanical Modes (EMs) to more than 0.1 with smaller overshoots and time to settle which shows the effectiveness of the method for multi-machine stability improvement. Also, the phasor simulation results show that the transient responses of the system rise time, settling time, peak time and peak magnitude were all impressively improved by an acceptable amount for the interconnected system with the proposed FFA-PSS thus, was able to control the LFOs effectively and produces enhanced performance compared to the GA and PSO based PSS. Similarly, the result validates the effectiveness of the proposed FFA tuned PSS for LFO control which demonstrates robustness, efficiency, and convergence speed ability than the classical GA and PSO tuning methods. ARQII Publication 2020 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/88998/1/FARM.pdf Sabo, Aliyu and Abdul Wahab, Noor Izzri and Othman, Mohammad Lutfi and Mohd Jaffar, Mai Zurwatul Ahlam and Beiranvand, Hamzeh (2020) Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer. Applications of Modelling and Simulation, 4. 183 - 201. ISSN 2600-8084 http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/129
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description This study describes the process of interconnected multi-machine power system stabilizer (PSS) optimization using a new intelligent technique called farmland fertility algorithm (FFA) to increase the stability of IEEE three machine nine bus power system and offset the low-frequency oscillations (LFOs) during a symmetrical 100 ms three-phase fault at bus 9. The FFA-PSS controller performance is compared with two familiar classical techniques, i.e. Genetic Algorithm (GA-PSS) and Particle Swarm Optimization (PSO-PSS) to confirm the capability of the proposed technique to realize improved system stability enhancement. The Eigenvalue simulation results with FFA produce stable Eigenvalues that increase the damping ratio of the Electromechanical Modes (EMs) to more than 0.1 with smaller overshoots and time to settle which shows the effectiveness of the method for multi-machine stability improvement. Also, the phasor simulation results show that the transient responses of the system rise time, settling time, peak time and peak magnitude were all impressively improved by an acceptable amount for the interconnected system with the proposed FFA-PSS thus, was able to control the LFOs effectively and produces enhanced performance compared to the GA and PSO based PSS. Similarly, the result validates the effectiveness of the proposed FFA tuned PSS for LFO control which demonstrates robustness, efficiency, and convergence speed ability than the classical GA and PSO tuning methods.
format Article
author Sabo, Aliyu
Abdul Wahab, Noor Izzri
Othman, Mohammad Lutfi
Mohd Jaffar, Mai Zurwatul Ahlam
Beiranvand, Hamzeh
spellingShingle Sabo, Aliyu
Abdul Wahab, Noor Izzri
Othman, Mohammad Lutfi
Mohd Jaffar, Mai Zurwatul Ahlam
Beiranvand, Hamzeh
Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
author_facet Sabo, Aliyu
Abdul Wahab, Noor Izzri
Othman, Mohammad Lutfi
Mohd Jaffar, Mai Zurwatul Ahlam
Beiranvand, Hamzeh
author_sort Sabo, Aliyu
title Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
title_short Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
title_full Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
title_fullStr Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
title_full_unstemmed Farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
title_sort farmland fertility optimization for designing of interconnected multi-machine power system stabilizer
publisher ARQII Publication
publishDate 2020
url http://psasir.upm.edu.my/id/eprint/88998/1/FARM.pdf
http://psasir.upm.edu.my/id/eprint/88998/
http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/129
_version_ 1713201322880139264
score 13.209306