Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution

A multi-energy system can supply both electric and thermal energy simultaneously to the end-users to achieve a high energy use-efficiency. However conventional operational strategies for multi-energy systems, in the existing works, do not consider renewable energy generation plants and CCHP plants a...

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Main Authors: Mao Yunshou, Wu Jiekang, Cai Zhihong, Wang Ruidong, Zhang Ran, Chen Lingmin
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9521190/
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spelling doaj-1a1edf8e1c904d5eb74df5bc116a2e952021-09-03T23:00:39ZengIEEEIEEE Access2169-35362021-01-01911998712000010.1109/ACCESS.2021.31071569521190Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining SolutionMao Yunshou0https://orcid.org/0000-0002-8729-2880Wu Jiekang1https://orcid.org/0000-0002-8512-2079Cai Zhihong2Wang Ruidong3Zhang Ran4Chen Lingmin5School of Automation, Guangdong University of Technology, Guangzhou, ChinaSchool of Automation, Guangdong University of Technology, Guangzhou, ChinaSchool of Automation, Guangdong University of Technology, Guangzhou, ChinaSchool of Automation, Guangdong University of Technology, Guangzhou, ChinaBeijing Aerocim Technology Company Ltd., Beijing, ChinaDepartment of Experiment Teaching, Guangdong University of Technology, Guangzhou, ChinaA multi-energy system can supply both electric and thermal energy simultaneously to the end-users to achieve a high energy use-efficiency. However conventional operational strategies for multi-energy systems, in the existing works, do not consider renewable energy generation plants and CCHP plants as belonging to different interests. To cope with this problem, this article studies a cooperative operation framework model for a Wind-Solar-CCHP Multi-energy system. Instead of the conventional non-cooperative solution-based method, the optimal operation scheduling problem of a multi-energy system is described as an optimization problem of Nash Bargaining. Then the optimization problem of Nash Bargaining for the multi-energy system decomposed into two subproblems: social welfare maximization problem (P1) and energy trading payment problem (P2). The optimal energy transaction profiles can be obtained by solving the P1 problem and the problem of payment of energy trading between PV, WT plant agents and the CCHP plant agent can be obtained by solving the P2 problem. Both problems P1 and P2 can be formulated into mixed-integer linear programming problems and solved by the alternating directional multiplier method. Numerical studies demonstrate the correctness and effectiveness of the proposed cooperative operation framework and distributed algorithm for solving the two subproblems. Moreover, the bargaining-based cooperative operation method can further induce the multi-energy system to improve the operating profit with the reduced feed-in tariff of distributed generation.https://ieeexplore.ieee.org/document/9521190/Wind-Solar-CCHP multi-energy systemNash bargainingenergy tradingalternating directional multiplier methodoptimal operation strategy
collection DOAJ
language English
format Article
sources DOAJ
author Mao Yunshou
Wu Jiekang
Cai Zhihong
Wang Ruidong
Zhang Ran
Chen Lingmin
spellingShingle Mao Yunshou
Wu Jiekang
Cai Zhihong
Wang Ruidong
Zhang Ran
Chen Lingmin
Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
IEEE Access
Wind-Solar-CCHP multi-energy system
Nash bargaining
energy trading
alternating directional multiplier method
optimal operation strategy
author_facet Mao Yunshou
Wu Jiekang
Cai Zhihong
Wang Ruidong
Zhang Ran
Chen Lingmin
author_sort Mao Yunshou
title Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
title_short Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
title_full Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
title_fullStr Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
title_full_unstemmed Cooperative Operation Framework for a Wind-Solar-CCHP Multi-Energy System Based on Nash Bargaining Solution
title_sort cooperative operation framework for a wind-solar-cchp multi-energy system based on nash bargaining solution
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description A multi-energy system can supply both electric and thermal energy simultaneously to the end-users to achieve a high energy use-efficiency. However conventional operational strategies for multi-energy systems, in the existing works, do not consider renewable energy generation plants and CCHP plants as belonging to different interests. To cope with this problem, this article studies a cooperative operation framework model for a Wind-Solar-CCHP Multi-energy system. Instead of the conventional non-cooperative solution-based method, the optimal operation scheduling problem of a multi-energy system is described as an optimization problem of Nash Bargaining. Then the optimization problem of Nash Bargaining for the multi-energy system decomposed into two subproblems: social welfare maximization problem (P1) and energy trading payment problem (P2). The optimal energy transaction profiles can be obtained by solving the P1 problem and the problem of payment of energy trading between PV, WT plant agents and the CCHP plant agent can be obtained by solving the P2 problem. Both problems P1 and P2 can be formulated into mixed-integer linear programming problems and solved by the alternating directional multiplier method. Numerical studies demonstrate the correctness and effectiveness of the proposed cooperative operation framework and distributed algorithm for solving the two subproblems. Moreover, the bargaining-based cooperative operation method can further induce the multi-energy system to improve the operating profit with the reduced feed-in tariff of distributed generation.
topic Wind-Solar-CCHP multi-energy system
Nash bargaining
energy trading
alternating directional multiplier method
optimal operation strategy
url https://ieeexplore.ieee.org/document/9521190/
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AT wujiekang cooperativeoperationframeworkforawindsolarcchpmultienergysystembasedonnashbargainingsolution
AT caizhihong cooperativeoperationframeworkforawindsolarcchpmultienergysystembasedonnashbargainingsolution
AT wangruidong cooperativeoperationframeworkforawindsolarcchpmultienergysystembasedonnashbargainingsolution
AT zhangran cooperativeoperationframeworkforawindsolarcchpmultienergysystembasedonnashbargainingsolution
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