期刊文献+

基于区块链技术的电力交易流程建模研究 被引量:6

Research on modeling of electric power transaction process based on blockchain technology
在线阅读 下载PDF
导出
摘要 用电侧的电力市场化发展是泛在电力物联网不可或缺的部分。区块链技术作为用电侧电力交易智能化实现的可选技术之一,其具体的交易流程缺乏研究。本文在区块链构成及其技术特征的基础上,以金融交易为依据和参照,提出了基于区块链技术的用户侧开放电力市场环境下,市场参与主体参与电力交易的典型交易流程。根据电力交易的需求,将利用区块链技术的电力交易分为7个步骤并分别抽象化描述。最后,对基于区块链技术的电力交易进行分析,并结合案例进一步说明其交易的流程,为泛在电力物联网的电力交易设计引入新技术提供参考。 The development of electricity marketization on the residential side is an indispensable part of the ubiquitous electricity internet of things. Blockchain technology is one of the optional technologies for the realization of intelligent power transactions on the residential side, and the specific transaction process is lacking research. Based on the composition of the blockchain and its technical characteristics, and based on financial transactions, this paper proposes a typical transaction flow for market participants in the electricity transaction under the environment of the residential side open electricity market based on blockchain technology. According to the needs of power trading, the power trading using blockchain technology is divided into 7 steps and abstracted separately. Finally, the power transaction based on blockchain technology is analyzed, and the transaction process is further explained in combination with the case, which provides a reference for the introduction of new technologies for the design of ubiquitous power internet of things power transactions.
作者 吉斌 朱敏健 张怀宇 翟海保 吴鑫 Ji Bin;Zhu Minjian;Zhang Huaiyu;Zhai Haibao;Wu Xin(NARI Group Corporation(State Grid Electric Power Research Institute Co.,Ltd,),Nanjing 211106;East China Division of State Grid Corporation of China,Shanghai 200120)
出处 《电气技术》 2020年第6期26-34,共9页 Electrical Engineering
基金 国家电网公司科技项目“华东电网调峰辅助服务市场关键技术研究与应用”。
关键词 区块链技术 用户侧 电力交易 泛在电力物联网 blockchain technology residential side electricity trading ubiquitous electricity internet of things
  • 相关文献

参考文献11

二级参考文献130

  • 1Sijie CHEN,Chen-Ching LIU.From demand response to transactive energy: state of the art[J].Journal of Modern Power Systems and Clean Energy,2017,5(1):10-19. 被引量:41
  • 2李生虎,丁明.电力市场中基于电价弹性的电力系统运行可靠性的协调控制[J].中国电机工程学报,2005,25(24):34-40. 被引量:30
  • 3张希良,汪婧.西部地区发展并网光伏发电系统的社会成本效益分析与政策评价[J].太阳能学报,2007,28(1):32-36. 被引量:34
  • 4Logenthiran T, Srinivasan D, Khambadkone A M.Multi-agent system for energy resource scheduling ofintegrated microgrids in a distributed system [J]. Electric Power Systems Research, 2011, 8 1 (1 ) : 138-148.
  • 5Wang Jianhui, Zhou Zhi, Botterud A. An evolutionarygame approach to analyzing bidding strategies inelectricity markets with elastic demand [J]. Energy,2011, 3 6 (5 ) : 3459-3467.
  • 6Langary D, Sadati N, Ranjbar A M. Direct approach incomputing robust Nash strategies for generating companiesin electricity markets [J]. Electrical Power and EnergySystems, 2014, 5 4 (5 4 ) : 442453.
  • 7Kazemi M, Ivatloo B M, Ehsan M. Risk-based biddingof large electric utilities using information gap decisiontheory considering demand response [J]. Electric PowerSystems Research, 2014, 1 1 4 (3 ) : 86-92.
  • 8Nojavan S, Zare K, Ashpazi M A. A hybrid approachbased on IGDT-MPSO method for optimal bidding strategyof price-taker generation station in day-ahead electricitymarket [J]. Electrical Power and Energy Systems,2015, 6 9 : 335-343.
  • 9Zakariazadeh A , Jadid S. Smart microgrid energy andreserve scheduling with demand response using stochasticoptimization[J]. Electrical Power and Energy Systems,2014, 6 3 (1 2 ) : 523-533.
  • 10Mazidi M, Zakariazadeh A , Jadid S, et al. Integratedscheduling of renewable generation and demand responseprograms in a microgrid [J]. Energy Conversion andManagement, 2014, 8 6 (1 0 ) : 1118-1127.

共引文献436

同被引文献109

引证文献6

二级引证文献30

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部