Optimal distributed generation location and sizing for loss minimization and voltage profile optimization using ant colony algorithm

A system of power generation whereby the generating equipment is located close to the point of usage, thereby reducing losses and operation cost is called distributed generation (DG). However, it is imperative that DGs are sited such that the quality of power delivered is optimized and the total rea...

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Published inSN applied sciences Vol. 3; no. 2; p. 248
Main Authors Ogunsina, Adeseye Amos, Petinrin, Moses Omolayo, Petinrin, Olutomilayo Olayemi, Offornedo, Emeka Nelson, Petinrin, Joseph Olawole, Asaolu, Gideon Olusola
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.02.2021
Springer Nature B.V
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Online AccessGet full text
ISSN2523-3963
2523-3971
2523-3971
DOI10.1007/s42452-021-04226-y

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Abstract A system of power generation whereby the generating equipment is located close to the point of usage, thereby reducing losses and operation cost is called distributed generation (DG). However, it is imperative that DGs are sited such that the quality of power delivered is optimized and the total real power loss within the system minimized. This paper proposes an approach for optimum sizing and siting of DGs sizing in a power distribution system using Ant Colony Optimization (ACO) algorithm. To validate the algorithm the IEEE 30 bus standard test system was employed. A 92% decrease in real power loss within the system relative to the value before the connection of DGs was observed, while the minimum bus voltage increased from 0.656 per unit to 0.965 per unit. The results obtained from ACO are further verified by creating an ETAP model of the IEEE 30 bus system and simulating the impact of DG on the system. A significant reduction in total real power losses within the system and improvement in voltage profile was observed when the DGs are placed at the ACO derived sites relative to at other locations. Therefore, Ant Colony Algorithm can be used in deriving the optimum sites and sizes of DGs in a power distribution system.
AbstractList A system of power generation whereby the generating equipment is located close to the point of usage, thereby reducing losses and operation cost is called distributed generation (DG). However, it is imperative that DGs are sited such that the quality of power delivered is optimized and the total real power loss within the system minimized. This paper proposes an approach for optimum sizing and siting of DGs sizing in a power distribution system using Ant Colony Optimization (ACO) algorithm. To validate the algorithm the IEEE 30 bus standard test system was employed. A 92% decrease in real power loss within the system relative to the value before the connection of DGs was observed, while the minimum bus voltage increased from 0.656 per unit to 0.965 per unit. The results obtained from ACO are further verified by creating an ETAP model of the IEEE 30 bus system and simulating the impact of DG on the system. A significant reduction in total real power losses within the system and improvement in voltage profile was observed when the DGs are placed at the ACO derived sites relative to at other locations. Therefore, Ant Colony Algorithm can be used in deriving the optimum sites and sizes of DGs in a power distribution system.
ArticleNumber 248
Author Petinrin, Moses Omolayo
Petinrin, Olutomilayo Olayemi
Offornedo, Emeka Nelson
Ogunsina, Adeseye Amos
Petinrin, Joseph Olawole
Asaolu, Gideon Olusola
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  surname: Petinrin
  fullname: Petinrin, Moses Omolayo
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  givenname: Olutomilayo Olayemi
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  organization: Department of Computer Science, City University of Hong Kong, Department of Mathematical Sciences, Kings University
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  fullname: Offornedo, Emeka Nelson
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  organization: Department of Electrical and Electronic Engineering, Federal Polytechnic Ede
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  givenname: Gideon Olusola
  surname: Asaolu
  fullname: Asaolu, Gideon Olusola
  organization: Power Equipment and Electrical Machinery Development Institute
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Issue 2
Keywords Renewable energy
Power flow
Ant colony optimization (ACO)
Distributed generation (DG)
Voltage quality
Language English
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SubjectTerms 3. Engineering (general)
Algorithms
Alternative energy sources
Ant colony optimization
Applied and Technical Physics
Chemistry/Food Science
Distributed generation
Earth Sciences
Electric potential
Electric power distribution
Electric power loss
Energy resources
Engineering
Environment
Genetic algorithms
Linear programming
Materials Science
Optimization algorithms
Pheromones
Renewable resources
Research Article
Sizing
Voltage
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Title Optimal distributed generation location and sizing for loss minimization and voltage profile optimization using ant colony algorithm
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