School of Control and Computer Engineering, North China Electric Power University, Baoding 071003, China.
Engineering Research Center of Intelligent Computing for Complex Energy Systems, Ministry of Education, Baoding 071003, China.
Sensors (Basel). 2022 Feb 24;22(5):1783. doi: 10.3390/s22051783.
Virtual power plant (VPP) composed of a large number of distributed energy resources (DERs) has become a regional multienergy aggregation model to realize the large-scale integration of renewable energy generation into the grid. Due to the characteristics of centralized management, the existing energy operation mode is difficult to simply apply to distributed energy resources transactions. The decentralization, transparency, contract execution automation and traceability of blockchain technology provide a new solution to the aggregation of decentralized resources and the opacity of transactions in VPP. In this paper, the existing problems of virtual power plants are analyzed, and the virtual power plant trading model is designed, which realizes the transparent benefit distribution and message transmission of virtual power plants. The virtual power plant blockchain network based on blockchain technology in this model solves the DERs coordination problem in VPP and the security and efficiency problems in information transmission. Combined with the actual situation of virtual power plant, the blockchain network collaboration mechanism (BNCM), which is convenient to reach agreement, is designed. Compared with the traditional practical Byzantine fault tolerance (PBFT) consensus algorithm, this mechanism can make DERs reach a consensus quickly. Finally, simulation experiments on the consensus algorithm show that the algorithm can reduce the collaboration time between DERs under the premise of ensuring the same fault tolerance rate and is more suitable for VPP scenarios with a large number of DERs.
虚拟电厂(VPP)由大量分布式能源(DER)组成,已成为一种区域多能源聚合模型,可实现可再生能源的大规模并入电网。由于集中管理的特点,现有的能源运营模式难以简单地应用于分布式能源交易。区块链技术的去中心化、透明性、合同执行自动化和可追溯性为分散资源的聚合和 VPP 中交易的不透明性提供了新的解决方案。本文分析了虚拟电厂存在的问题,设计了虚拟电厂交易模型,实现了虚拟电厂的透明效益分配和消息传输。该模型中基于区块链技术的虚拟电厂区块链网络解决了 VPP 中 DER 的协调问题以及信息传输中的安全和效率问题。结合虚拟电厂的实际情况,设计了方便达成共识的区块链网络协作机制(BNCM)。与传统的实用拜占庭容错(PBFT)共识算法相比,该机制可以使 DER 快速达成共识。最后,对共识算法进行了仿真实验,结果表明,该算法在保证相同容错率的前提下可以减少 DER 之间的协作时间,更适用于具有大量 DER 的 VPP 场景。