Optimal Operation of Energy Hub Systems under Resiliency Response Options

The economic and resilient operation of power systems has always been one of the main priorities of energy systems. In spite of improvements in various fields of energy systems, especially power systems, the issue of resilience has become more important. For this purpose, this paper proposes a multi...

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Main Authors: Ali Khodadadi, Taher Abedinzadeh, Hasan Alipour, Jaber Pouladi
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:Journal of Electrical and Computer Engineering
Online Access:http://dx.doi.org/10.1155/2023/2590362
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author Ali Khodadadi
Taher Abedinzadeh
Hasan Alipour
Jaber Pouladi
author_facet Ali Khodadadi
Taher Abedinzadeh
Hasan Alipour
Jaber Pouladi
author_sort Ali Khodadadi
collection DOAJ
description The economic and resilient operation of power systems has always been one of the main priorities of energy systems. In spite of improvements in various fields of energy systems, especially power systems, the issue of resilience has become more important. For this purpose, this paper proposes a multiobjective optimization model to improve the economic performance of energy hub systems and improve the resilience of electrical consumers. Also, consumer welfare, which is a function of the energy not supplied index, is maximized over a 24-hour period by considering extreme weather conditions. The ε-constraint method is applied to solve the proposed model by transforming the multiobjective optimization problem into several single-objective optimization problems. The max-min fuzzy method is also used to select the optimal solution among the Pareto solutions. A sample hub system is made up of electrical, thermal, and gas loads, electrical and thermal energy sources, and storage systems employed as a test system. A group of actions is applied to improve the resilience of the system, which may be affected by outages caused by storms under the resilience response program (RRP). The results proved the efficiency of the proposed RRP in improving economics and resilience.
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institution Kabale University
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spelling doaj-art-6242286fa6ef4b0095cf70d1b41df1d62025-08-20T03:34:41ZengWileyJournal of Electrical and Computer Engineering2090-01552023-01-01202310.1155/2023/2590362Optimal Operation of Energy Hub Systems under Resiliency Response OptionsAli Khodadadi0Taher Abedinzadeh1Hasan Alipour2Jaber Pouladi3Department of Electrical EngineeringDepartment of Electrical EngineeringDepartment of Electrical EngineeringDepartment of Electrical EngineeringThe economic and resilient operation of power systems has always been one of the main priorities of energy systems. In spite of improvements in various fields of energy systems, especially power systems, the issue of resilience has become more important. For this purpose, this paper proposes a multiobjective optimization model to improve the economic performance of energy hub systems and improve the resilience of electrical consumers. Also, consumer welfare, which is a function of the energy not supplied index, is maximized over a 24-hour period by considering extreme weather conditions. The ε-constraint method is applied to solve the proposed model by transforming the multiobjective optimization problem into several single-objective optimization problems. The max-min fuzzy method is also used to select the optimal solution among the Pareto solutions. A sample hub system is made up of electrical, thermal, and gas loads, electrical and thermal energy sources, and storage systems employed as a test system. A group of actions is applied to improve the resilience of the system, which may be affected by outages caused by storms under the resilience response program (RRP). The results proved the efficiency of the proposed RRP in improving economics and resilience.http://dx.doi.org/10.1155/2023/2590362
spellingShingle Ali Khodadadi
Taher Abedinzadeh
Hasan Alipour
Jaber Pouladi
Optimal Operation of Energy Hub Systems under Resiliency Response Options
Journal of Electrical and Computer Engineering
title Optimal Operation of Energy Hub Systems under Resiliency Response Options
title_full Optimal Operation of Energy Hub Systems under Resiliency Response Options
title_fullStr Optimal Operation of Energy Hub Systems under Resiliency Response Options
title_full_unstemmed Optimal Operation of Energy Hub Systems under Resiliency Response Options
title_short Optimal Operation of Energy Hub Systems under Resiliency Response Options
title_sort optimal operation of energy hub systems under resiliency response options
url http://dx.doi.org/10.1155/2023/2590362
work_keys_str_mv AT alikhodadadi optimaloperationofenergyhubsystemsunderresiliencyresponseoptions
AT taherabedinzadeh optimaloperationofenergyhubsystemsunderresiliencyresponseoptions
AT hasanalipour optimaloperationofenergyhubsystemsunderresiliencyresponseoptions
AT jaberpouladi optimaloperationofenergyhubsystemsunderresiliencyresponseoptions