Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems

The need for better-performing algorithms to solve real-world power systems engineering problems has always been a challenging topic. Due to their stochastic nature, metaheuristic algorithms can provide better results. Thus, they have a rising trend in terms of investigation. This paper is a further...

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Main Author: Abu Zitar, Raed (author)
Other Authors: Ekinci, Serdar (author), Izci, Davut (author), Alsoud, Anas Ratib (author), Abualigah, Laith (author)
Published: 2022
Subjects:
Online Access:https://depot.sorbonne.ae/handle/20.500.12458/1294
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author Abu Zitar, Raed
author2 Ekinci, Serdar
Izci, Davut
Alsoud, Anas Ratib
Abualigah, Laith
author2_role author
author
author
author
author_facet Abu Zitar, Raed
Ekinci, Serdar
Izci, Davut
Alsoud, Anas Ratib
Abualigah, Laith
author_role author
dc.creator.none.fl_str_mv Abu Zitar, Raed
Ekinci, Serdar
Izci, Davut
Alsoud, Anas Ratib
Abualigah, Laith
dc.date.none.fl_str_mv 2022-07-25T08:26:22Z
2022-07-25T08:26:22Z
2022
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 10.1007/s00521-022-07575-w(
https://depot.sorbonne.ae/handle/20.500.12458/1294
10.1007/s00521-022-07575-w
dc.language.none.fl_str_mv en
dc.relation.none.fl_str_mv Neural Computing and Applications
0941-0643
dc.subject.none.fl_str_mv Reptile search algorithm
Lévy flight
Nelder-Mead method
Electric power systems
dc.title.none.fl_str_mv Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
dc.type.none.fl_str_mv Controlled Vocabulary for Resource Type Genres::text::periodical::journal::contribution to journal::journal article
description The need for better-performing algorithms to solve real-world power systems engineering problems has always been a challenging topic. Due to their stochastic nature, metaheuristic algorithms can provide better results. Thus, they have a rising trend in terms of investigation. This paper is a further attempt to offer a better optimizing structure, therefore, aims to provide a better-performing algorithm both for designing an appropriate proportional-integral-derivative (PID) controller to effectively operate an automatic voltage regulator (AVR) system and extracting the optimum parameters of a power system stabilizer (PSS) employed in a single-machine infinite-bus (SMIB) power system. Therefore, the paper discusses the development of the Lévy flight-based reptile search algorithm with local search capability and evaluates its potential against challenging power systems engineering optimization problems. The Lévy flight concept is used for better exploration capability in the proposed algorithm, whereas the Nelder-Mead simplex search algorithm is integrated for further exploitation. The latter case is confirmed through 23 benchmark functions with different features using statistical and nonparametric tests. The superiority of the proposed Lévy flight-based reptile search and Nelder-Mead (L-RSANM) algorithm-based PID controller for the AVR system is demonstrated comparatively using convergence, statistical and nonparametric tests along with transient and frequency responses. Besides, it is also assessed against previously reported and different methods, showing further superiority for AVR system control. Furthermore, the extraordinary ability of the L-RSANM algorithm to design an efficient PSS employed in the SMIB power system is demonstrated, as well. In conclusion, the proposed L-RSANM algorithm is shown to be more capable to solve the challenging power systems engineering design problems.
id sorbonner_cc1c2b1d5b9f526c0fcc6dbfa715d2ea
identifier_str_mv 10.1007/s00521-022-07575-w(
10.1007/s00521-022-07575-w
language_invalid_str_mv en
network_acronym_str sorbonner
network_name_str Sorbonne University Abu Dhabi repository
oai_identifier_str oai:depot.sorbonne.ae:20.500.12458/1294
publishDate 2022
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spelling Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problemsAbu Zitar, RaedEkinci, SerdarIzci, DavutAlsoud, Anas RatibAbualigah, LaithReptile search algorithmLévy flightNelder-Mead methodElectric power systemsThe need for better-performing algorithms to solve real-world power systems engineering problems has always been a challenging topic. Due to their stochastic nature, metaheuristic algorithms can provide better results. Thus, they have a rising trend in terms of investigation. This paper is a further attempt to offer a better optimizing structure, therefore, aims to provide a better-performing algorithm both for designing an appropriate proportional-integral-derivative (PID) controller to effectively operate an automatic voltage regulator (AVR) system and extracting the optimum parameters of a power system stabilizer (PSS) employed in a single-machine infinite-bus (SMIB) power system. Therefore, the paper discusses the development of the Lévy flight-based reptile search algorithm with local search capability and evaluates its potential against challenging power systems engineering optimization problems. The Lévy flight concept is used for better exploration capability in the proposed algorithm, whereas the Nelder-Mead simplex search algorithm is integrated for further exploitation. The latter case is confirmed through 23 benchmark functions with different features using statistical and nonparametric tests. The superiority of the proposed Lévy flight-based reptile search and Nelder-Mead (L-RSANM) algorithm-based PID controller for the AVR system is demonstrated comparatively using convergence, statistical and nonparametric tests along with transient and frequency responses. Besides, it is also assessed against previously reported and different methods, showing further superiority for AVR system control. Furthermore, the extraordinary ability of the L-RSANM algorithm to design an efficient PSS employed in the SMIB power system is demonstrated, as well. In conclusion, the proposed L-RSANM algorithm is shown to be more capable to solve the challenging power systems engineering design problems.2022-07-25T08:26:22Z2022-07-25T08:26:22Z2022Controlled Vocabulary for Resource Type Genres::text::periodical::journal::contribution to journal::journal articleapplication/pdf10.1007/s00521-022-07575-w(https://depot.sorbonne.ae/handle/20.500.12458/129410.1007/s00521-022-07575-wenNeural Computing and Applications0941-0643oai:depot.sorbonne.ae:20.500.12458/12942024-09-11T10:58:57Z
spellingShingle Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
Abu Zitar, Raed
Reptile search algorithm
Lévy flight
Nelder-Mead method
Electric power systems
title Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
title_full Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
title_fullStr Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
title_full_unstemmed Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
title_short Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
title_sort Development of Lévy flight-based reptile search algorithm with local search ability for power systems engineering design problems
topic Reptile search algorithm
Lévy flight
Nelder-Mead method
Electric power systems
url https://depot.sorbonne.ae/handle/20.500.12458/1294