基于能源区块链网络的虚拟电厂运行与调度模型
发布时间:2018-11-12 19:56
【摘要】:区块链作为一种全新的去中心化基础构架和分布式计算范式,融合并创新了多种计算机技术。虚拟电厂(virtual power plant,VPP)是能源互联网中的一个重要分支,在聚合分布式发电资源和建立虚拟电力资源交易等方面发挥着重要的作用。该文针对现有的VPP模型中存在的问题,将区块链技术引入VPP,提出一种能源区块链网络模型,进而提出一种改进的VPP运行与调度模型。通过仿真实验,对比了该模型与原有的VPP运行模式在煤炭消耗、温室气体排放和经济成本等方面的数据。仿真结果表明,该模型可更好地反映需求侧实时信息,更有利于VPP进行环境友好、信息透明的稳定调度,也提高了系统的数据安全性和存储安全性。
[Abstract]:As a new decentralized infrastructure and distributed computing paradigm, block chain merges and innovates a variety of computer technologies. Virtual Power Plant (virtual power plant,VPP) is an important branch of the energy Internet. It plays an important role in aggregating distributed generation resources and establishing virtual power resource transaction. In order to solve the problems existing in the existing VPP model, this paper proposes an energy block chain network model by introducing block chain technology into VPP, and then proposes an improved VPP operation and scheduling model. Through simulation experiments, the data of coal consumption, greenhouse gas emission and economic cost between the model and the original VPP operation mode are compared. The simulation results show that the model can better reflect the real-time information on the demand side, is more conducive to the stable scheduling of VPP environment friendly and transparent information, and also improves the data security and storage security of the system.
【作者单位】: 郑州大学;
【基金】:国家自然科学基金项目(61602422) 河南省科技攻关计划项目(162102310536) 河南省基础与前沿技术研究项目基金(152300410047)~~
【分类号】:TK01;TM73
本文编号:2328064
[Abstract]:As a new decentralized infrastructure and distributed computing paradigm, block chain merges and innovates a variety of computer technologies. Virtual Power Plant (virtual power plant,VPP) is an important branch of the energy Internet. It plays an important role in aggregating distributed generation resources and establishing virtual power resource transaction. In order to solve the problems existing in the existing VPP model, this paper proposes an energy block chain network model by introducing block chain technology into VPP, and then proposes an improved VPP operation and scheduling model. Through simulation experiments, the data of coal consumption, greenhouse gas emission and economic cost between the model and the original VPP operation mode are compared. The simulation results show that the model can better reflect the real-time information on the demand side, is more conducive to the stable scheduling of VPP environment friendly and transparent information, and also improves the data security and storage security of the system.
【作者单位】: 郑州大学;
【基金】:国家自然科学基金项目(61602422) 河南省科技攻关计划项目(162102310536) 河南省基础与前沿技术研究项目基金(152300410047)~~
【分类号】:TK01;TM73
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