Multi-objective optimal scheduling of virtual power plant considering carbon capture and multi-energy flow

As an integrated energy network with multi-energy flow interconnected, virtual power plants (VPPs) face difficulties such as high actual carbon emissions, insufficient new energy consumption capacity, complex optimization variables of multi-energy flow, and non-uniform optimization objectives. To th...

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Bibliographic Details
Main Authors: LI Yichao, XU Dong, XU Gang, LI Yun, QIAO Jiacheng
Format: Article
Language:zho
Published: zhejiang electric power 2023-10-01
Series:Zhejiang dianli
Subjects:
Online Access:https://zjdl.cbpt.cnki.net/WKE3/WebPublication/paperDigest.aspx?paperID=5440ec3b-0b1e-4044-93c9-4b26e3b5732b
Description
Summary:As an integrated energy network with multi-energy flow interconnected, virtual power plants (VPPs) face difficulties such as high actual carbon emissions, insufficient new energy consumption capacity, complex optimization variables of multi-energy flow, and non-uniform optimization objectives. To this end, a multi-objective optimal scheduling method for virtual power plants considering carbon capture and multi-energy flow is proposed to improve the new energy consumption capacity of multi-energy flow virtual power plants and reduce carbon emissions. First, a reward and punishment ladder-type carbon trading mechanism is established based on the actual carbon emissions of the virtual power plant. Then, a dual-objective optimal scheduling model is built with the minimization of operating costs and carbon emissions as the objective function and solved by using the multi-objective salp swarm algorithm. Finally, multiple scheduling scenarios are set up to compare and analyze the performance of the multi-objective optimization algorithm. The results verify the feasibility and effectiveness of the optimal scheduling model.
ISSN:1007-1881