Transactive energy plays a key role in the operation and energy management of future power systems. However, the conventional operational mechanism, which follows a centralized design, is often less secure, vulnerable to malicious behaviors, and suffers from privacy leakage. In this work, we introduce blockchain technology in transactive energy to address these challenges. Specifically, we develop a novel blockchain-based transactive energy framework for prosumers and design a decentralized energy trading algorithm that matches the operation of the underlying blockchain system. We prove that the trading algorithm improves the individual benefit and guarantees the socially optimal performance, and thus incentivizes prosumers to join the transactive energy platform. Moreover, we evaluate the feasibility of the transactive energy platform throughout the implementation of a small-scale network of Internet of Things (IoT) devices and extensive simulations using real-world data. Our results show that this blockchain-based transactive energy platform is feasible in practice, and the decentralized trading algorithm reduces the user's individual cost by up to 77% and lowers the overall cost by 24%.
翻译:在未来的电力系统运行和能源管理中,跨电子能源发挥着关键作用。然而,在中央设计之后的常规操作机制往往不那么安全,容易受到恶意行为的影响,而且会受到隐私泄漏的影响。在这项工作中,我们引入了跨电子能源中的链式技术来应对这些挑战。具体地说,我们为代理商开发了一个新的基于链式的跨电子能源框架,并设计了一个与基本链系统运行相匹配的分散化能源交易算法。我们证明,交易算法提高了个人利益,保障了社会最佳性能,从而激励了代理商加入跨电子能源平台。此外,我们评估了跨电子能源平台的可行性,在整个实施小型的物联网网络(IOT)装置和使用现实世界数据进行广泛的模拟的过程中。我们的结果显示,基于链式跨电子能源平台在实践中是可行的,而分散化交易算法将用户的个人成本降低到77%,并将总成本降低24 % 。