Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm

In today’s world, the development and continuation of life require energy. Supplying this energy demand requires careful and scientific planning of the energy provided by a variety of products, such as oil, gas, coal, electricity, etc. A new study on the operation of energy carriers called Energy Co...

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Main Authors: Mohammad Dehghani, Mohammad Mardaneh, Om Parkash Malik, Josep M. Guerrero, Ruben Morales-Menendez, Ricardo A. Ramirez-Mendoza, José Matas, Abdullah Abusorrah
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/17/5862
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spelling doaj-7a9198a255cd4b4483f76d7e574f12772020-11-25T03:52:04ZengMDPI AGApplied Sciences2076-34172020-08-01105862586210.3390/app10175862Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization AlgorithmMohammad Dehghani0Mohammad Mardaneh1Om Parkash Malik2Josep M. Guerrero3Ruben Morales-Menendez4Ricardo A. Ramirez-Mendoza5José Matas6Abdullah Abusorrah7Department of Electrical and Electronics Engineering, Shiraz University of Technology, Shiraz 71557-13876, IranDepartment of Electrical and Electronics Engineering, Shiraz University of Technology, Shiraz 71557-13876, IranDepartment of Electrical and Computer Engineering, University of Calgary, AB T2N 1N4 Calgary, CanadaCROM Center for Research on Microgrids, Department of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkSchool of Engineering and Sciences, Tecnologico de Monterrey, Monterrey 64849, MexicoSchool of Engineering and Sciences, Tecnologico de Monterrey, Monterrey 64849, MexicoElectric Engineering Department, Polytechnic University of Catalonia (EEBE-UPC), 08019 Barcelona, SpainCenter of Research Excellence in Renewable Energy and Power Systems, Department of Electrical and Computer Engineering, Faculty of Engineering, K. A. CARE Energy Research and Innovation Center, King Abdulaziz University, Jeddah 21589, Saudi ArabiaIn today’s world, the development and continuation of life require energy. Supplying this energy demand requires careful and scientific planning of the energy provided by a variety of products, such as oil, gas, coal, electricity, etc. A new study on the operation of energy carriers called Energy Commitment (EC) is proposed. The purpose of the EC is to set a pattern for the use of energy carriers to supply energy demand, considering technical and economic constraints. EC is a constrained optimization problem that can be solved by using optimization methods. This study suggests the Following Optimization Algorithm (FOA) to solve the EC problem to achieve technical and economic benefits. Minimizing energy supply costs for the total study period is considered as an objective function. The FOA simulates social relationships among the community members who try to improve their community by following each other. Simulation is carried out on a 10-unit energy system supplied by various types of energy carriers that includes transportation, agriculture, industrial, residential, commercial, and public sectors. The results show that the optimal energy supply for a grid with 0.15447 Millions of Barrels of Oil Equivalent (MBOE) of energy demand costs 9.0922 millions dollar for a 24-h study period. However, if the energy supply is not optimal, the costs of operating energy carriers will increase and move away from the optimal economic situation. The economic distribution of electrical demand between 10 power plants and the amount of production units per hour of the study period is determined. The EC outputs are presented, which include an appropriate pattern of energy carrier utilization, energy demand supply costs, appropriate combination of units, and power plant production. The behavior and process of achieving the answer in the convergence curve for the implementation of FOA on EC indicates the exploration and exploitation capacity of FOA. Based on the simulated results, EC provides more information than Unit Commitment (UC) and analyzes the network more efficiently and deeply.https://www.mdpi.com/2076-3417/10/17/5862energyenergy commitmentenergy carriermulti-carrier energyfollowing optimization algorithm
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Dehghani
Mohammad Mardaneh
Om Parkash Malik
Josep M. Guerrero
Ruben Morales-Menendez
Ricardo A. Ramirez-Mendoza
José Matas
Abdullah Abusorrah
spellingShingle Mohammad Dehghani
Mohammad Mardaneh
Om Parkash Malik
Josep M. Guerrero
Ruben Morales-Menendez
Ricardo A. Ramirez-Mendoza
José Matas
Abdullah Abusorrah
Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
Applied Sciences
energy
energy commitment
energy carrier
multi-carrier energy
following optimization algorithm
author_facet Mohammad Dehghani
Mohammad Mardaneh
Om Parkash Malik
Josep M. Guerrero
Ruben Morales-Menendez
Ricardo A. Ramirez-Mendoza
José Matas
Abdullah Abusorrah
author_sort Mohammad Dehghani
title Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
title_short Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
title_full Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
title_fullStr Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
title_full_unstemmed Energy Commitment for a Power System Supplied by Multiple Energy Carriers System using Following Optimization Algorithm
title_sort energy commitment for a power system supplied by multiple energy carriers system using following optimization algorithm
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-08-01
description In today’s world, the development and continuation of life require energy. Supplying this energy demand requires careful and scientific planning of the energy provided by a variety of products, such as oil, gas, coal, electricity, etc. A new study on the operation of energy carriers called Energy Commitment (EC) is proposed. The purpose of the EC is to set a pattern for the use of energy carriers to supply energy demand, considering technical and economic constraints. EC is a constrained optimization problem that can be solved by using optimization methods. This study suggests the Following Optimization Algorithm (FOA) to solve the EC problem to achieve technical and economic benefits. Minimizing energy supply costs for the total study period is considered as an objective function. The FOA simulates social relationships among the community members who try to improve their community by following each other. Simulation is carried out on a 10-unit energy system supplied by various types of energy carriers that includes transportation, agriculture, industrial, residential, commercial, and public sectors. The results show that the optimal energy supply for a grid with 0.15447 Millions of Barrels of Oil Equivalent (MBOE) of energy demand costs 9.0922 millions dollar for a 24-h study period. However, if the energy supply is not optimal, the costs of operating energy carriers will increase and move away from the optimal economic situation. The economic distribution of electrical demand between 10 power plants and the amount of production units per hour of the study period is determined. The EC outputs are presented, which include an appropriate pattern of energy carrier utilization, energy demand supply costs, appropriate combination of units, and power plant production. The behavior and process of achieving the answer in the convergence curve for the implementation of FOA on EC indicates the exploration and exploitation capacity of FOA. Based on the simulated results, EC provides more information than Unit Commitment (UC) and analyzes the network more efficiently and deeply.
topic energy
energy commitment
energy carrier
multi-carrier energy
following optimization algorithm
url https://www.mdpi.com/2076-3417/10/17/5862
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