A Cybersecurity Transaction Energy System Using Multi-Tier Blockchain

Juan C. Olivares-Rojas, Enrique Reyes-Archundia, José A. Gutiérrez-Gnecchi
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Abstract

Cybersecurity incidents are becoming more frequent due to the high degree of penetration that information and communication technologies have in our daily lives. One of the critical infrastructures that has benefited the most in recent years from the broad integration of technologies has been the smart grid. Smart metering systems allow, among other things, the monitoring of energy consumption and production readings that are translated into monetary transactions. The tampering and manipulation of the smart meter readings are reflected in economic losses for the utilities and loss of confidence in the end-users. This work presents a cybersecurity architecture based on a multitier blockchain capable of adapting to smart metering systems' architecture through an edge-fog-cloud distributed computing scheme. The proposed architecture is highly scalable to the various components of smart metering systems and improves the performance of blockchains in aspects such as storage and processing. This blockchain uses its own consensus algorithm proof-of-efficiency, which allows benefiting end-users through more efficient use of their energy consumption considering the power quality, the forecast of the demand, and the support for detecting theft and energy fraud. The consensus algorithm uses the same architecture proposed to determine users' rewards through data analytics and machine learning techniques. All of this lays the foundation for a more intelligent, more transactional, and cybersecure metering system. The architecture developed was tested to guarantee the cybersecurity of the transactions carried out in the smart metering systems. The results obtained suggest that using a blockchain architecture allows improving the cybersecurity of smart metering systems and giving end-users greater confidence in their energy transactions, being able to receive better economic incentives by making more efficient use of their energy consumption.
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基于多层区块链的网络安全交易能源系统
由于信息和通信技术在我们日常生活中的高度渗透,网络安全事件变得越来越频繁。近年来,从广泛的技术集成中受益最大的关键基础设施之一是智能电网。智能计量系统可以监测能源消耗和生产数据,并将其转化为货币交易。对智能电表读数的篡改和操纵反映在公用事业的经济损失和对最终用户的信心丧失上。本研究提出了一种基于多层区块链的网络安全架构,该架构能够通过边缘雾云分布式计算方案适应智能计量系统的架构。所提出的架构可高度扩展到智能计量系统的各个组件,并在存储和处理等方面提高区块链的性能。该区块链使用自己的共识算法效率证明,考虑到电力质量,需求预测以及对检测盗窃和能源欺诈的支持,通过更有效地利用其能源消耗,从而使最终用户受益。共识算法使用相同的架构,通过数据分析和机器学习技术来确定用户的奖励。所有这些都为更智能、更具事务性和网络安全的计量系统奠定了基础。对所开发的体系结构进行了测试,以保证智能计量系统中交易的网络安全。所获得的结果表明,使用区块链架构可以改善智能计量系统的网络安全,并使最终用户对他们的能源交易更有信心,能够通过更有效地利用他们的能源消耗来获得更好的经济激励。
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