Multi-agent game operation of regional integrated energy system based on carbon emission flow

In the process of promoting energy green transformation, the optimization of regional integrated energy system faces many challenges such as cooperative management, energy saving and emission reduction, as well as uncertainty of new energy output. Therefore, this paper proposes a multi-agent game op...

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Main Authors: Li Zhang, Dong Pan, Bao Wang, Jianxiong Jia, Zhumeng Song, Xin Zhang
Format: Article
Language:English
Published: Frontiers Media S.A. 2024-01-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenrg.2023.1333907/full
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author Li Zhang
Dong Pan
Bao Wang
Jianxiong Jia
Zhumeng Song
Xin Zhang
author_facet Li Zhang
Dong Pan
Bao Wang
Jianxiong Jia
Zhumeng Song
Xin Zhang
author_sort Li Zhang
collection DOAJ
description In the process of promoting energy green transformation, the optimization of regional integrated energy system faces many challenges such as cooperative management, energy saving and emission reduction, as well as uncertainty of new energy output. Therefore, this paper proposes a multi-agent game operation method of regional integrated energy system based on carbon emission flow. First, this paper establishes a carbon emission flow calculation model for each subject, and proposes a comprehensive tariff model based on the carbon emission flow, which discounts the carbon emissions from the power supply side to the power consumption side. Secondly, considering the interests of each subject, this paper establishes the decision-making model of each subject. And the new energy uncertainty, the cost of energy preference of prosumers, and the thermal inertia of buildings are considered in the decision model. Finally, the model is solved using differential evolution algorithm and solver. The case study verifies that the comprehensive electricity pricing model based on carbon emission flow developed in this paper can play a role in balancing economy and low carbon.
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spelling doaj.art-62ad0a17cbdb4150aa5e3c6c12d172232024-01-03T04:34:47ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2024-01-011110.3389/fenrg.2023.13339071333907Multi-agent game operation of regional integrated energy system based on carbon emission flowLi Zhang0Dong Pan1Bao Wang2Jianxiong Jia3Zhumeng Song4Xin Zhang5Economic and Technological Research Institute of State Grid Anhui Electric Power Company, Hefei, ChinaEconomic and Technological Research Institute of State Grid Anhui Electric Power Company, Hefei, ChinaEconomic and Technological Research Institute of State Grid Anhui Electric Power Company, Hefei, ChinaEconomic and Technological Research Institute of State Grid Anhui Electric Power Company, Hefei, ChinaEconomic and Technological Research Institute of State Grid Anhui Electric Power Company, Hefei, ChinaSchool of Electrical and Information Engineering, Tianjin University, Tianjin, ChinaIn the process of promoting energy green transformation, the optimization of regional integrated energy system faces many challenges such as cooperative management, energy saving and emission reduction, as well as uncertainty of new energy output. Therefore, this paper proposes a multi-agent game operation method of regional integrated energy system based on carbon emission flow. First, this paper establishes a carbon emission flow calculation model for each subject, and proposes a comprehensive tariff model based on the carbon emission flow, which discounts the carbon emissions from the power supply side to the power consumption side. Secondly, considering the interests of each subject, this paper establishes the decision-making model of each subject. And the new energy uncertainty, the cost of energy preference of prosumers, and the thermal inertia of buildings are considered in the decision model. Finally, the model is solved using differential evolution algorithm and solver. The case study verifies that the comprehensive electricity pricing model based on carbon emission flow developed in this paper can play a role in balancing economy and low carbon.https://www.frontiersin.org/articles/10.3389/fenrg.2023.1333907/fullIEScarbon emission flowmulti-agent gamedemand responsethermal inertia of buildings
spellingShingle Li Zhang
Dong Pan
Bao Wang
Jianxiong Jia
Zhumeng Song
Xin Zhang
Multi-agent game operation of regional integrated energy system based on carbon emission flow
Frontiers in Energy Research
IES
carbon emission flow
multi-agent game
demand response
thermal inertia of buildings
title Multi-agent game operation of regional integrated energy system based on carbon emission flow
title_full Multi-agent game operation of regional integrated energy system based on carbon emission flow
title_fullStr Multi-agent game operation of regional integrated energy system based on carbon emission flow
title_full_unstemmed Multi-agent game operation of regional integrated energy system based on carbon emission flow
title_short Multi-agent game operation of regional integrated energy system based on carbon emission flow
title_sort multi agent game operation of regional integrated energy system based on carbon emission flow
topic IES
carbon emission flow
multi-agent game
demand response
thermal inertia of buildings
url https://www.frontiersin.org/articles/10.3389/fenrg.2023.1333907/full
work_keys_str_mv AT lizhang multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow
AT dongpan multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow
AT baowang multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow
AT jianxiongjia multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow
AT zhumengsong multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow
AT xinzhang multiagentgameoperationofregionalintegratedenergysystembasedoncarbonemissionflow