Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms

The acceptance rate of Electric Vehicles (EVs) in the transport industry has increased substantially due to the augmented interest towards sustainable transportation initiatives. However, their impact in terms of increased power demand on the electric power market can increase real power losses, dec...

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Main Authors: V. K. B. Ponnam, K. Swarnasri
Format: Article
Language:English
Published: D. G. Pylarinos 2020-06-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:https://www.etasr.com/index.php/ETASR/article/view/3517
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spelling doaj-b57e3a02f9884d8fb9dae5ef5d3207992020-12-02T12:40:04ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362020-06-01103Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization AlgorithmsV. K. B. Ponnam0K. Swarnasri1Department of Electrical and Electronic Engineering, Acharya Nagarjuna University, IndiaDepartment of Electrical and Electronics Engineering, RVR & JC College of Engineering, IndiaThe acceptance rate of Electric Vehicles (EVs) in the transport industry has increased substantially due to the augmented interest towards sustainable transportation initiatives. However, their impact in terms of increased power demand on the electric power market can increase real power losses, decrease voltage profile, and consequently decrease voltage stability margins. It is necessary to install Electric Vehicle Charging Stations (EVCSs) and Distributed Generators (DGs) at optimal locations to decrease the EV load effect in the Radial Distribution System (RDS). This paper addresses a multi-objective optimization technique to obtain simultaneous EVCS & DG placement and sizing. The problem is formulated to optimize real power losses, Average Voltage Deviation Index (AVDI), and Voltage Stability Index (VSI) of the electrical distribution system. Simulation studies were performed on the standard IEEE 33-bus and 69-bus test systems. Harries Hawk Optimization (HHO) and Teaching-Learning Based Optimization (TLBO) algorithms were selected to minimize the system objectives. The simulation outcomes reveal that the proposed approach improved system performance in all aspects. Among HHO and TLBO, HHO is reasonably successful in accomplishing the desired goals. https://www.etasr.com/index.php/ETASR/article/view/3517Electrical Vehicles (EVs)Electric Vehicle Charging Stations (EVCSs)renewable energy sourcesDistributed Generators (DGs)Average Voltage Deviation Index (AVDI)Voltage Stability Index (VSI)
collection DOAJ
language English
format Article
sources DOAJ
author V. K. B. Ponnam
K. Swarnasri
spellingShingle V. K. B. Ponnam
K. Swarnasri
Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
Engineering, Technology & Applied Science Research
Electrical Vehicles (EVs)
Electric Vehicle Charging Stations (EVCSs)
renewable energy sources
Distributed Generators (DGs)
Average Voltage Deviation Index (AVDI)
Voltage Stability Index (VSI)
author_facet V. K. B. Ponnam
K. Swarnasri
author_sort V. K. B. Ponnam
title Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
title_short Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
title_full Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
title_fullStr Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
title_full_unstemmed Multi-Objective Optimal Allocation of Electric Vehicle Charging Stations and Distributed Generators in Radial Distribution Systems using Metaheuristic Optimization Algorithms
title_sort multi-objective optimal allocation of electric vehicle charging stations and distributed generators in radial distribution systems using metaheuristic optimization algorithms
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 2241-4487
1792-8036
publishDate 2020-06-01
description The acceptance rate of Electric Vehicles (EVs) in the transport industry has increased substantially due to the augmented interest towards sustainable transportation initiatives. However, their impact in terms of increased power demand on the electric power market can increase real power losses, decrease voltage profile, and consequently decrease voltage stability margins. It is necessary to install Electric Vehicle Charging Stations (EVCSs) and Distributed Generators (DGs) at optimal locations to decrease the EV load effect in the Radial Distribution System (RDS). This paper addresses a multi-objective optimization technique to obtain simultaneous EVCS & DG placement and sizing. The problem is formulated to optimize real power losses, Average Voltage Deviation Index (AVDI), and Voltage Stability Index (VSI) of the electrical distribution system. Simulation studies were performed on the standard IEEE 33-bus and 69-bus test systems. Harries Hawk Optimization (HHO) and Teaching-Learning Based Optimization (TLBO) algorithms were selected to minimize the system objectives. The simulation outcomes reveal that the proposed approach improved system performance in all aspects. Among HHO and TLBO, HHO is reasonably successful in accomplishing the desired goals.
topic Electrical Vehicles (EVs)
Electric Vehicle Charging Stations (EVCSs)
renewable energy sources
Distributed Generators (DGs)
Average Voltage Deviation Index (AVDI)
Voltage Stability Index (VSI)
url https://www.etasr.com/index.php/ETASR/article/view/3517
work_keys_str_mv AT vkbponnam multiobjectiveoptimalallocationofelectricvehiclechargingstationsanddistributedgeneratorsinradialdistributionsystemsusingmetaheuristicoptimizationalgorithms
AT kswarnasri multiobjectiveoptimalallocationofelectricvehiclechargingstationsanddistributedgeneratorsinradialdistributionsystemsusingmetaheuristicoptimizationalgorithms
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