Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games

In light of the current integrated energy system (IES) transactions, the interaction between the supply and demand sides is not fully considered. With the overall development of the carbon trading market, there is a need to deeply explore the interests of multiple entities in energy trading under th...

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Main Authors: Xianqiang Zeng, Yujie Feng, Yun Zhou, Hengjie Li
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:International Transactions on Electrical Energy Systems
Online Access:http://dx.doi.org/10.1155/2023/2063273
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author Xianqiang Zeng
Yujie Feng
Yun Zhou
Hengjie Li
author_facet Xianqiang Zeng
Yujie Feng
Yun Zhou
Hengjie Li
author_sort Xianqiang Zeng
collection DOAJ
description In light of the current integrated energy system (IES) transactions, the interaction between the supply and demand sides is not fully considered. With the overall development of the carbon trading market, there is a need to deeply explore the interests of multiple entities in energy trading under the step-by-step carbon trading mechanism. Therefore, research on the optimization and scheduling of multicomprehensive energy systems based on step-by-step carbon trading and hybrid games is proposed. Firstly, the interests and demands of various integrated energy systems and users in multi-integrated energy system energy trading should be comprehensively considered. Based on the master-slave game and Nash bargaining theory, an optimization model of multiple integrated energy systems is built under the step-by-step carbon trading mechanism and load aggregation, representing the interests of the entire user side. Secondly, the proposed game optimization model has been established to prove it can maximize social benefits. IES and user game optimization models have been established, with multi-IES being leaders with the goal of maximizing their own benefits, guiding the optimization between IES and load by formulating energy prices. Users are followers who aim to maximize comprehensive benefits and respond to IES’s decisions through cooperation. Finally, using the improved gray wolf algorithm to solve the built model, it has been proven through comparison of calculation examples that the proposed method can reduce carbon emissions, effectively coordinate the optimization scheduling of multi-IES, and achieve the fair distribution of multi-IES cooperation benefits. This improves the effectiveness of individual and social benefits.
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series International Transactions on Electrical Energy Systems
spelling doaj-art-8e51648aadb245d2acdba52f795497002025-08-20T02:09:22ZengWileyInternational Transactions on Electrical Energy Systems2050-70382023-01-01202310.1155/2023/2063273Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid GamesXianqiang Zeng0Yujie Feng1Yun Zhou2Hengjie Li3School of Electrical and Information EngineeringSchool of Electrical and Information EngineeringKey Laboratory of Control of Power Transmission and ConversionSchool of Electrical and Information EngineeringIn light of the current integrated energy system (IES) transactions, the interaction between the supply and demand sides is not fully considered. With the overall development of the carbon trading market, there is a need to deeply explore the interests of multiple entities in energy trading under the step-by-step carbon trading mechanism. Therefore, research on the optimization and scheduling of multicomprehensive energy systems based on step-by-step carbon trading and hybrid games is proposed. Firstly, the interests and demands of various integrated energy systems and users in multi-integrated energy system energy trading should be comprehensively considered. Based on the master-slave game and Nash bargaining theory, an optimization model of multiple integrated energy systems is built under the step-by-step carbon trading mechanism and load aggregation, representing the interests of the entire user side. Secondly, the proposed game optimization model has been established to prove it can maximize social benefits. IES and user game optimization models have been established, with multi-IES being leaders with the goal of maximizing their own benefits, guiding the optimization between IES and load by formulating energy prices. Users are followers who aim to maximize comprehensive benefits and respond to IES’s decisions through cooperation. Finally, using the improved gray wolf algorithm to solve the built model, it has been proven through comparison of calculation examples that the proposed method can reduce carbon emissions, effectively coordinate the optimization scheduling of multi-IES, and achieve the fair distribution of multi-IES cooperation benefits. This improves the effectiveness of individual and social benefits.http://dx.doi.org/10.1155/2023/2063273
spellingShingle Xianqiang Zeng
Yujie Feng
Yun Zhou
Hengjie Li
Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
International Transactions on Electrical Energy Systems
title Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
title_full Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
title_fullStr Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
title_full_unstemmed Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
title_short Research on Optimization and Scheduling of Multi-Integrated Energy System Based on Step-by-Step Carbon Trading and Hybrid Games
title_sort research on optimization and scheduling of multi integrated energy system based on step by step carbon trading and hybrid games
url http://dx.doi.org/10.1155/2023/2063273
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AT yujiefeng researchonoptimizationandschedulingofmultiintegratedenergysystembasedonstepbystepcarbontradingandhybridgames
AT yunzhou researchonoptimizationandschedulingofmultiintegratedenergysystembasedonstepbystepcarbontradingandhybridgames
AT hengjieli researchonoptimizationandschedulingofmultiintegratedenergysystembasedonstepbystepcarbontradingandhybridgames