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基于博弈论的电采暖系统应用经济性研究

Tonxin Feng Hong Zhang Guoping Chen Jiahua Hu Chao Ning Tiejiang Yuan

全球能源互联网(英文)2021,Vol.4Issue(3):315-323,9.
全球能源互联网(英文)2021,Vol.4Issue(3):315-323,9.DOI:10.14171/j.2096-5117.gei.2021.03.009

基于博弈论的电采暖系统应用经济性研究

Economic research on application of electric heating system based on game theory

Tonxin Feng 1Hong Zhang 2Guoping Chen 1Jiahua Hu 2Chao Ning 1Tiejiang Yuan2

作者信息

  • 1. Changji Electricity Corporation of State Gird,Changji 831100,P.R.China
  • 2. School of Electrical Engineering,Dalian University of Technology,Dalian 116024,P.R.China
  • 折叠

摘要

Abstract

The use of clean electricity to replace fossil energy burning for heating is an important emission reduction way to achieve carbon neutrality.Without a good business model,it is very difficult to promote electric heating as a replacement for coal-fired systems in some areas with abundant coal resources.This study proposed a new business model for electric heating with stakeholders that included the government,the power grid company,and heat users.Based on this model,a specific tri-objective optimization model was proposed with the electric heating promotion power,heating electricity price,and government subsidy as variables to characterize the game relationship of the stakeholders,and the components of the stakeholder benefit function were analyzed in detail.A classical multi-objective genetic algorithm was used to solve the model.Finally,an "electrical heating" project for a typical area in China was analyzed,and four promotion cases were examined.The results showed that the power grid company and users had an antagonistic relationship in relation to the electricity price,but the best solution was found for all three stakeholders due to the high financial subsidies provided by the government.

关键词

碳中和/电采暖/商业模式/多目标优化/三赢

Key words

Carbon neutrality/Electric hating/Business model/Multi-objective optimization/Triple win

引用本文复制引用

Tonxin Feng,Hong Zhang,Guoping Chen,Jiahua Hu,Chao Ning,Tiejiang Yuan..基于博弈论的电采暖系统应用经济性研究[J].全球能源互联网(英文),2021,4(3):315-323,9.

基金项目

This work was supported by Central Universities Basic Scientific Research Business Project of Ministry of Education (Talent Special Project,DUT20RC (5) 021) and State Grid Science and Technology Project of China (SGXJCJ00YJJS1800384). (Talent Special Project,DUT20RC (5)

全球能源互联网(英文)

OACSCDCSTPCDEI

2096-5117

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