论文标题
基于拜占庭的区块链的分布式能源交易的架构
An Architecture for Distributed Energies Trading in Byzantine-Based Blockchain
论文作者
论文摘要
随着智慧城市的发展,不仅城市的各个角落都相互联系,而且还与城市相连。它们共同形成一个大型分布式网络,可以促进分布式能量站(DES)和相应的智能聚合器的集成。然而,由于无信任的能量交易产生了潜在的安全性和隐私保护,如何进行这种能量交易是一个棘手的挑战。在本文中,我们提出了一个基于区块链的多元能源交易(B-MET)系统,以通过执行我们设计的智能合约来进行安全有效的能源交易。由于Energies Trading需要B-MET系统中的区块链具有较高的吞吐量和低潜伏期,因此我们根据节点的信用来设计一种新的拜占庭共识机制(BCM),以提高B-MET系统下联盟区块链的效率。然后,我们将热量和功率(CHP)系统作为提供分布式能量的典型示例。我们通过一种新颖的多领导者Stackelberg游戏来量化它们的实用程序,并通过智能城市中聚合器与迪斯之间的相互作用进行建模。通过在聚合器之间达到NASH平衡来分析和解决,这反映了聚合者从DESS购买能量的竞争。最后,我们进行了大量数值模拟,以评估和验证我们提出的模型和算法,这些模型和算法完全证明了它们的正确性和效率。
With the development of smart cities, not only are all corners of the city connected to each other, but also connected from city to city. They form a large distributed network together, which can facilitate the integration of distributed energy station (DES) and corresponding smart aggregators. Nevertheless, because of potential security and privacy protection arisen from trustless energies trading, how to make such energies trading goes smoothly is a tricky challenge. In this paper, we propose a blockchain-based multiple energies trading (B-MET) system for secure and efficient energies trading by executing a smart contract we design. Because energies trading requires the blockchain in B-MET system to have high throughput and low latency, we design a new byzantine-based consensus mechanism (BCM) based on node's credit to improve efficiency for the consortium blockchain under the B-MET system. Then, we take combined heat and power (CHP) system as a typical example that provides distributed energies. We quantify their utilities, and model the interactions between aggregators and DESs in a smart city by a novel multi-leader multi-follower Stackelberg game. It is analyzed and solved by reaching Nash equilibrium between aggregators, which reflects the competition between aggregators to purchase energies from DESs. In the end, we conduct plenty of numerical simulations to evaluate and verify our proposed model and algorithms, which demonstrate their correctness and efficiency completely.