论文标题
轻巧的区块链框架用于位置吸引的点对点能量交易
Lightweight Blockchain Framework for Location-aware Peer-to-Peer Energy Trading
论文作者
论文摘要
点对点(P2P)能源交易可以促进大量的小型生产商和消费者融入能源市场。这些新市场参与者的分散管理在市场结算,参与者的声誉和对电网约束的考虑方面具有挑战性。本文提出了一个支持区块链的框架,用于智能电网中生产者和消费者的P2P能源交易。设计了一个完全分散的市场结算机制,该机制并不依赖集中的实体来解决市场,并鼓励生产者和消费者如实的真实地与附近的代理商进行谈判。为此,在定价机制中考虑了试剂的电距离,以鼓励代理商与邻近代理商进行贸易。此外,每个代理都考虑了一个声誉因素,反映了其过去的表现在传递承诺的能量方面。在开始谈判之前,代理商根据对贸易伙伴的声誉和接近性的偏好选择其贸易伙伴。提出了匿名位置证明(A-POL)算法,该算法允许代理证明其位置而不揭示其真实身份。通过几个案例研究来说明拟议框架的实用性,并详细分析了其安全性和隐私。
Peer-to-Peer (P2P) energy trading can facilitate integration of a large number of small-scale producers and consumers into energy markets. Decentralized management of these new market participants is challenging in terms of market settlement, participant reputation and consideration of grid constraints. This paper proposes a blockchain-enabled framework for P2P energy trading among producer and consumer agents in a smart grid. A fully decentralized market settlement mechanism is designed, which does not rely on a centralized entity to settle the market and encourages producers and consumers to negotiate on energy trading with their nearby agents truthfully. To this end, the electrical distance of agents is considered in the pricing mechanism to encourage agents to trade with their neighboring agents. In addition, a reputation factor is considered for each agent, reflecting its past performance in delivering the committed energy. Before starting the negotiation, agents select their trading partners based on their preferences over the reputation and proximity of the trading partners. An Anonymous Proof of Location (A-PoL) algorithm is proposed that allows agents to prove their location without revealing their real identity. The practicality of the proposed framework is illustrated through several case studies, and its security and privacy are analyzed in detail.