论文标题
交易能量的安全分布分类帐:电子伏交换(EVE)区块链
A Secure Distributed Ledger for Transactive Energy: The Electron Volt Exchange (EVE) Blockchain
论文作者
论文摘要
采用区块链用于交易能源已经获得了巨大的动力,因为它允许相互不信任的代理在无信任的能源市场上交易能源服务。迄今为止的研究假设,在分类账中记录交易中的内置拜占庭式容错足以确保完整性。必须扩大此类工作以解决安全差距,包括不保证可靠和高效的市场运营的随机双边交易,以及在报告实际生产/消费数字时有动力作弊的市场参与者。此处的工作介绍了以下特征的电子电压交换框架:1)用于定价和调度的分布式协议,同时保持约束和私有约束和投标,以及2)2)一种分布式算法,以防止盗窃,以验证对伪造者的差异传感器的差异传感器(例如,智能传感器)的差异(例如,智能传感器)(例如智能传感器)(例如智能传感器)。通过使用HyperLeDger织物的模拟和实现来证明该方法的灵活性和鲁棒性。
The adoption of blockchain for Transactive Energy has gained significant momentum as it allows mutually non-trusting agents to trade energy services in a trustless energy market. Research to date has assumed that the built-in Byzantine Fault Tolerance in recording transactions in a ledger is sufficient to ensure integrity. Such work must be extended to address security gaps including random bilateral transactions that do not guarantee reliable and efficient market operation, and market participants having incentives to cheat when reporting actual production/consumption figures. Work herein introduces the Electron Volt Exchange framework with the following characteristics: 1) a distributed protocol for pricing and scheduling prosumers' production/consumption while keeping constraints and bids private, and 2) a distributed algorithm to prevent theft that verifies prosumers' compliance to scheduled transactions using information from grid sensors (such as smart meters) and mitigates the impact of false data injection attacks. Flexibility and robustness of the approach are demonstrated through simulation and implementation using Hyperledger Fabric.