首页|Electricity-heat-based Integrated Demand Response Considering Double Auction Energy Market With Multi-energy Storage for Interconnected Areas

Electricity-heat-based Integrated Demand Response Considering Double Auction Energy Market With Multi-energy Storage for Interconnected Areas

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With development of integrated energy systems and energy markets,transactive energy has received increasing attention from society and academia,and realization of energy distribution and integrated demand response through market transactions has become a current research hotspot.Research on optimized operation of a distributed energy station as a regional energy supply center is of great significance for improving flexibility and reliability of the system.Based on retail-side energy trading market,this study first establishes a framework of combined electric and heating energy markets and analyses a double auction market mechanism model of interconnected distributed energy stations.This study establishes a mechanism model of energy market participants,and establishes the electric heating combined market-clearing model to maximize global surplus considering multi-energy storage.Finally,in the case study,a typical user energy consumption scenario in winter is selected,showing market-clearing results and demand response effects on a typical day.Impact of transmission line constraints,energy supply equipment capacity,and other factors on clearing results and global surplus are compared and analyzed,verifying the effects of the proposed method on improving global sur-plus,enhancing interests of market participants and realizing coordination and optimal allocation of both supply and demand resources through energy complementarity between regions.

Double auctionenergy marketintegrated energy systeminterconnected energy stationsmulti-energy storage

Dan Wang、Deyu Huang、Qing'e Hu、Hongjie Jia、Bo Liu、Yang Lei

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Key Laboratory of Smart Grid of Ministry of Education,Tianjin University,Tianjin 300072,China

Key Laboratory of Smart Energy & Information Technology of Tianjin Municipality,Tianjin 30072,China

National Key R&D Program of ChinaScience and Technology Project of SGCCNational Natural Science Foundation of ChinaJoint Research Fund of the National Science Fund of ChinaAPPLIED ENERGY UNiLAB-DEM

2018YFB0905000SGTJDK00DWJS180023251977141U1766210

2024

中国电机工程学会电力与能源系统学报(英文版)
中国电机工程学会

中国电机工程学会电力与能源系统学报(英文版)

CSTPCDEI
ISSN:2096-0042
年,卷(期):2024.10(4)