基于软信任的下一代工业物联网/物联网安全、认证和授权架构

Nicholas Garcia, Eman M. Hammad, Abdallah K. Farraj
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引用次数: 0

摘要

大规模机器类型通信(mMTC)的可扩展部署面临的最大挑战之一是高效、可扩展和低延迟的安全和身份验证解决方案。MMTC涉及5G/6G和下一代(NextG)电力系统中的工业物联网(IIoT)和能源物联网(IoET)。当考虑到典型IIoT和iot设备的特征限制以及固有的缺乏强大的内置安全功能时,这一挑战的严重性被放大了。工业物联网动态身份验证和授权的可扩展解决方案可以解决许多问题。在这项工作中,我们使用合适的信任工具和框架(如区块链)审查并提出了NextG系统中IIoT/IoET设备信任管理的架构。提出的架构采用基于区块链的双层分层共识。为了支持可伸缩性,我们研究了在区块链上使用有向无环图(DAG)数据结构的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft-Trust Based Architecture for NextG IIoT/IoET Security, Authentication and Authorization
One of the biggest challenges in scalable deployments of massive machine type communication (mMTC) is the efficient, scalable and low-delay security and authentication solutions. MMTC involves Industrial Internet of Things (IIoT) and Internet of Energy Things (IoET) in 5G/6G and Next Generation (NextG) Power Systems. Criticality of this challenge is amplified when considering characteristic limitations of typical IIoT & IoET devices and inherent lack of robust built-in security features. Scalable solutions for IIoT dynamic authentication and authorization could address many of the concerns. In this work, we review and propose an architecture for trust management of IIoT/IoET devices in NextG Systems using suitable trust tools and frameworks such as Blockchain. The proposed architecture adopts a two-tier hierarchical Blockchain-based consensus. To support scalability, we examine the benefits of utilizing a directed acyclic graph (DAG) data structure on the Blockchain.
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