Research on thermal power new energy integration transaction model based on power reform system

Thermal power is the main power supply in China, but it brings serious environmental pollution; The introduction of renewable energy consumption responsibility weight system means that users need to increase the consumption of green power, which has a significant impact on the competitive strategy m...

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Main Authors: Guo Xingwu, Yin Shuo, Chen Xing, Wang Shiqian, Jin Man, Feng Jiabin
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/05/e3sconf_esma2021_01050.pdf
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author Guo Xingwu
Yin Shuo
Chen Xing
Wang Shiqian
Jin Man
Feng Jiabin
author_facet Guo Xingwu
Yin Shuo
Chen Xing
Wang Shiqian
Jin Man
Feng Jiabin
author_sort Guo Xingwu
collection DOAJ
description Thermal power is the main power supply in China, but it brings serious environmental pollution; The introduction of renewable energy consumption responsibility weight system means that users need to increase the consumption of green power, which has a significant impact on the competitive strategy model of power producers. This paper also uses game model and cooperative game model to analyse the impact of thermal power new energy integration transaction model and market equilibrium point. The results show that the profit of generator under cooperative game is greater than that under competition.
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spelling doaj.art-60885fe732ce49d9add57a59aacce1db2022-12-21T19:39:46ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013380105010.1051/e3sconf/202233801050e3sconf_esma2021_01050Research on thermal power new energy integration transaction model based on power reform systemGuo Xingwu0Yin Shuo1Chen Xing2Wang Shiqian3Jin Man4Feng Jiabin5State Grid Henan Electric Power Company Economic and Technical Research InstituteState Grid Henan Electric Power Company Economic and Technical Research InstituteState Grid Henan Electric Power Company Economic and Technical Research InstituteState Grid Henan Electric Power Company Economic and Technical Research InstituteState Grid Henan Electric Power Company Economic and Technical Research InstituteSchool of Electrical Engineering, Zhengzhou UniversityThermal power is the main power supply in China, but it brings serious environmental pollution; The introduction of renewable energy consumption responsibility weight system means that users need to increase the consumption of green power, which has a significant impact on the competitive strategy model of power producers. This paper also uses game model and cooperative game model to analyse the impact of thermal power new energy integration transaction model and market equilibrium point. The results show that the profit of generator under cooperative game is greater than that under competition.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/05/e3sconf_esma2021_01050.pdf
spellingShingle Guo Xingwu
Yin Shuo
Chen Xing
Wang Shiqian
Jin Man
Feng Jiabin
Research on thermal power new energy integration transaction model based on power reform system
E3S Web of Conferences
title Research on thermal power new energy integration transaction model based on power reform system
title_full Research on thermal power new energy integration transaction model based on power reform system
title_fullStr Research on thermal power new energy integration transaction model based on power reform system
title_full_unstemmed Research on thermal power new energy integration transaction model based on power reform system
title_short Research on thermal power new energy integration transaction model based on power reform system
title_sort research on thermal power new energy integration transaction model based on power reform system
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/05/e3sconf_esma2021_01050.pdf
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AT wangshiqian researchonthermalpowernewenergyintegrationtransactionmodelbasedonpowerreformsystem
AT jinman researchonthermalpowernewenergyintegrationtransactionmodelbasedonpowerreformsystem
AT fengjiabin researchonthermalpowernewenergyintegrationtransactionmodelbasedonpowerreformsystem