论文标题

在启用5G的智能网格中启用零信任体系结构

Enabling a Zero Trust Architecture in a 5G-enabled Smart Grid

论文作者

Alipour, Mohammad Ali, Ghasemshirazi, Saeid, Shirvani, Ghazaleh

论文摘要

物联网最有希望的应用之一是智能电网(SG)。将SG的数据通信网络集成到电网中,可以从电源线,配电电站和最终用户收集和分析信息。智能电网(SG)需要及时可靠的连接,以通过IoT提供实时监视。因此,5G可以被认为是升级现有电网系统的催化剂。尽管如此,信息基础架构的额外攻击表面是通过在5G中广泛采用无处不在的连通性来实现的,智能电网中典型的信息安全系统无法及时响应。因此,在威胁,不断变化的环境中保证网络的隐私和安全性需要开创性的建筑,这些建筑远远超出了传统的静态安全措施的局限性。本文以“连续身份身份验证和动态访问控制”为基础,分析了针对物联网功能系统的零信任(ZT)体系结构,并使用该知识来开发安全保护架构。

One of the most promising applications of the IoT is the Smart Grid (SG). Integrating SG's data communications network into the power grid allows gathering and analyzing information from power lines, distribution power stations, and end users. A smart grid (SG) requires a prompt and dependable connection to provide real-time monitoring through the IoT. Hence 5G could be considered a catalyst for upgrading the existing power grid systems. Nonetheless, the additional attack surface of information infrastructure has been brought about by the widespread adoption of ubiquitous connectivity in 5G, to which the typical information security system in the smart grid cannot respond promptly. Therefore, guaranteeing the Privacy and Security of a network in a threatening, ever-changing environment requires groundbreaking architectures that go well beyond the limitations of traditional, static security measures. With "Continuous Identity Authentication and Dynamic Access Control" as its foundation, this article analyzes the Zero Trust (ZT) architecture specific to the power system of IoT and uses that knowledge to develop a security protection architecture.

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