A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique

This paper investigates the integration of the fractional-order capacitor on electrical power systems to improve system performance. The system performance problem in this exploration is reducing the losses and improving the voltage profile. For decades, capacitor installation is having a great effe...

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Autores principales: R.A. Swief, Noha H. El-Amary, M.Z. Kamh
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Lenguaje:EN
Publicado: Elsevier 2022
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Acceso en línea:https://doaj.org/article/f7fa4bc18ae143bf8007f984c6850296
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spelling oai:doaj.org-article:f7fa4bc18ae143bf8007f984c68502962021-11-18T04:45:22ZA novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique1110-016810.1016/j.aej.2021.06.056https://doaj.org/article/f7fa4bc18ae143bf8007f984c68502962022-02-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S1110016821004117https://doaj.org/toc/1110-0168This paper investigates the integration of the fractional-order capacitor on electrical power systems to improve system performance. The system performance problem in this exploration is reducing the losses and improving the voltage profile. For decades, capacitor installation is having a great effect on compensating system reactive power which affects system performance and quality. The novelty in the proposed work is to integrate the fractional capacitor to the power systems as a distributed generator. The study compares the classical capacitor implementation versus the fractional capacitor as a suggested new technology. Due to the complexity of the study to obtain optimal size, parameter, and location of the proposed technologies, Marine predator as a meta-heuristic optimization technique is employed. The proposed methodology can be divided into two parts; a single objective function to study the losses minimization and the voltage improvement individually and the second part is the multi-objective single representation problem to find the optimal solution for both two targets, the losses reduction, and the voltage profile improvement. The proposed fractional capacitor implementation is assimilated to standard IEEE 69 radial system.R.A. SwiefNoha H. El-AmaryM.Z. KamhElsevierarticleFractional-order capacitorReducing lossesVoltage profileMarine predator optimization techniquesEngineering (General). Civil engineering (General)TA1-2040ENAlexandria Engineering Journal, Vol 61, Iss 2, Pp 1543-1550 (2022)
institution DOAJ
collection DOAJ
language EN
topic Fractional-order capacitor
Reducing losses
Voltage profile
Marine predator optimization techniques
Engineering (General). Civil engineering (General)
TA1-2040
spellingShingle Fractional-order capacitor
Reducing losses
Voltage profile
Marine predator optimization techniques
Engineering (General). Civil engineering (General)
TA1-2040
R.A. Swief
Noha H. El-Amary
M.Z. Kamh
A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
description This paper investigates the integration of the fractional-order capacitor on electrical power systems to improve system performance. The system performance problem in this exploration is reducing the losses and improving the voltage profile. For decades, capacitor installation is having a great effect on compensating system reactive power which affects system performance and quality. The novelty in the proposed work is to integrate the fractional capacitor to the power systems as a distributed generator. The study compares the classical capacitor implementation versus the fractional capacitor as a suggested new technology. Due to the complexity of the study to obtain optimal size, parameter, and location of the proposed technologies, Marine predator as a meta-heuristic optimization technique is employed. The proposed methodology can be divided into two parts; a single objective function to study the losses minimization and the voltage improvement individually and the second part is the multi-objective single representation problem to find the optimal solution for both two targets, the losses reduction, and the voltage profile improvement. The proposed fractional capacitor implementation is assimilated to standard IEEE 69 radial system.
format article
author R.A. Swief
Noha H. El-Amary
M.Z. Kamh
author_facet R.A. Swief
Noha H. El-Amary
M.Z. Kamh
author_sort R.A. Swief
title A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
title_short A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
title_full A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
title_fullStr A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
title_full_unstemmed A novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
title_sort novel implementation for fractional order capacitor in electrical power system for improving system performance applying marine predator optimization technique
publisher Elsevier
publishDate 2022
url https://doaj.org/article/f7fa4bc18ae143bf8007f984c6850296
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