Blockchain-Based Public Key Authentication of IoT Devices for Electrical Energy Systems

Nicolò Cardamone, Vito Dalena, A. Mauro, M. Settembre, Gabriele Vecchia, Antonino Vitaliti, G. Dondossola, D. Bartalesi, F. Garrone, R. Terruggia
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引用次数: 0

Abstract

Information and communication technologies (ICT) support the digital evolution of energy networks, enabling automated and smart operations. Internet of Things (IoT) devices allow automated remote measurements and data collection improving anomaly detection, predictive maintenance, and operational efficiency. When IoT devices communicate with each other they shall be authenticated within the network. Traditional authentication methods rely on certificates issued by a centralized Certification Authority (CA), that may be affected by a single point of failure and may be computationally heavy for resource constrained IoT devices. The paper presents a prototype implementation of a blockchain based public key authentication for IoT devices in the context of electrical monitoring systems. In the proposed solution, the IoT devices communicate on a secure channel via a publisher subscriber protocol (MQTT - Message Queue Telemetry Transport), exploiting the Transport Layer Security (TLS) and the use of an Algorand Blockchain system. The results of the functional testing are encouraging a deeper investigation in the adoption of Blockchain systems for the authentication of IoT devices in typical scenarios targeted by the energy transition.
基于区块链的电力系统物联网设备公钥认证
信息和通信技术(ICT)支持能源网络的数字化演进,实现自动化和智能运营。物联网(IoT)设备允许自动远程测量和数据收集,从而提高异常检测、预测性维护和运营效率。物联网设备之间进行通信时,需要在网络内进行认证。传统的身份验证方法依赖于集中式证书颁发机构(CA)颁发的证书,这可能会受到单点故障的影响,并且对于资源受限的物联网设备来说,计算量可能很大。本文提出了一种基于区块链的电子监控系统背景下物联网设备公钥认证的原型实现。在提出的解决方案中,物联网设备通过发布者订阅者协议(MQTT -消息队列遥测传输)在安全通道上进行通信,利用传输层安全性(TLS)和使用Algorand区块链系统。功能测试的结果鼓励在能源转型的典型场景中采用区块链系统进行物联网设备认证的深入研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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