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考虑智能建筑特性的多微网端对端能量交易方法
引用本文:葛少云,李吉峰,刘洪,何星瑭,申凯月. 考虑智能建筑特性的多微网端对端能量交易方法[J]. 电力系统自动化, 2021, 45(6): 203-214. DOI: 10.7500/AEPS20200330004
作者姓名:葛少云  李吉峰  刘洪  何星瑭  申凯月
作者单位:智能电网教育部重点实验室(天津大学),天津市 300072
基金项目:国家自然科学基金资助项目(51777133)。
摘    要:针对当前分布式交易市场未充分考虑终端用户用能特性,且市场主体之间的博弈关系仍需进一步挖掘等问题,文中提出了考虑智能建筑特性的多微网端对端(P2P)能量交易方法.首先,以智能建筑作为终端负荷载体,提出了一种新的建筑热阻-热容热平衡模型,并构建了市场主体即微网的自治调度模型.其次,分别采用非合作博弈及主从博弈模型分析了P2...

关 键 词:多微网  热阻-热容模型  端对端交易  非合作博弈  主从博弈
收稿时间:2020-03-30
修稿时间:2020-09-02

Peer-to-Peer Energy Trading Method for Multiple Microgrids Considering Characteristics of Smart Building
GE Shaoyun,LI Jifeng,LIU Hong,HE Xingtang,SHEN Kaiyue. Peer-to-Peer Energy Trading Method for Multiple Microgrids Considering Characteristics of Smart Building[J]. Automation of Electric Power Systems, 2021, 45(6): 203-214. DOI: 10.7500/AEPS20200330004
Authors:GE Shaoyun  LI Jifeng  LIU Hong  HE Xingtang  SHEN Kaiyue
Affiliation:Key Laboratory of the Ministry of Education on Smart Power Grids (Tianjin University), Tianjin 300072, China
Abstract:Aiming at the problems that the current distributed trading market does not fully consider the energy consumption characteristics of end users, and the game relationship between market entities still needs to be further explored, this paper proposes a peer-to-peer (P2P) trading method of multiple microgrids considering the characteristics of smart buildings. Firstly, taking smart buildings as the end load carrier, this paper proposes a new building resistance-capacity (R-C) thermal balance model and constructs an autonomous scheduling model for the market entities, i.e., the microgrids. Secondly, the non-cooperative game model and the Stackelberg game model are used to analyze the game relationship among sellers and the game relationship between sellers and buyers in the P2P transaction process, which improves the analysis of the game relationship between the links in the P2P transaction. Finally, through the practical cases, the influence of end energy consumption characteristics on the microgrid economic scheduling and P2P transactions is analyzed, and the economic and technical benefits of P2P transactions on the operation of microgrids are quantitatively analyzed by using specific indices. The influence of P2P transactions on distribution network operation is also analyzed.
Keywords:multiple microgrids  thermal resistance-capacity model  peer-to-peer (P2P) transaction  non-cooperative game  Stackelberg game
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