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含电转气和电解熔融碳酸盐的虚拟电厂低碳经济调度

粟世玮 林剑波 李咸善 李欣 柴华瑞 易成鸣 熊炜

三峡大学学报(自然科学版)2025,Vol.47Issue(3):89-97,9.
三峡大学学报(自然科学版)2025,Vol.47Issue(3):89-97,9.DOI:10.13393/j.cnki.issn.1672-948X.2025.03.013

含电转气和电解熔融碳酸盐的虚拟电厂低碳经济调度

Low Carbon Economic Dispatch of Virtual Power Plants with the Conversion of Power to Gas and Electrolytic Molten Carbonate

粟世玮 1林剑波 2李咸善 1李欣 1柴华瑞 2易成鸣 2熊炜1

作者信息

  • 1. 梯级水电站运行与控制湖北省重点实验室(三峡大学),湖北 宜昌 443002||三峡大学 电气与新能源学院,湖北 宜昌 443002
  • 2. 三峡大学 电气与新能源学院,湖北 宜昌 443002
  • 折叠

摘要

Abstract

In order to promote the low-carbon power generation and improve the low-carbon economy of virtual power plants,the equipment of electrolytic molten carbonate is introduced to capture the carbon dioxide generated by gas turbine cogeneration,and the equipment of power to gas(P2G)is finely modeled.Meanwhile,a low-carbon economic dispatch model of virtual power plant with P2G and electrolytic molten carbonate synergy is established.Firstly,a typical scenario of wind power output is generated by Latin hypercube sampling and Kantorovich scenario reduction technology considering the uncertainty of renewable energy.Then,a two-stage P2G,GT and EMC coupling model is constructed based on the electrochemical principle of EMC.Moreover,a tiered carbon trading mechanism is introduced to guide virtual power plants to control the carbon emissions,and a low-carbon economic dispatch model is established with the goal of minimizing the total operating cost of virtual power plants.Finally,it is verified by setting up the different schemes for comparative analysis that the established model can effectively reduce the carbon emissions of the system while the economic benefits of the virtual power plant is improved and the wind power absorption capacity is enhanced.

关键词

虚拟电厂/电转气/电解熔融碳酸盐/低碳经济调度/阶梯式碳交易机制

Key words

virtual power plant/electricity to gas conversion/electrolytic molten carbonate/low carbon economic dispatch/stepwise carbon trading mechanism

分类

动力与电气工程

引用本文复制引用

粟世玮,林剑波,李咸善,李欣,柴华瑞,易成鸣,熊炜..含电转气和电解熔融碳酸盐的虚拟电厂低碳经济调度[J].三峡大学学报(自然科学版),2025,47(3):89-97,9.

基金项目

国家自然科学基金项目(52107107) (52107107)

三峡大学学报(自然科学版)

OA北大核心

1672-948X

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