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基于区块链的物联网上下文感知授权管理即服务。

Blockchain-Based Context-Aware Authorization Management as a Service in IoT.

机构信息

Laboratoire Bordelais de Recherche en Informatique, Bordeaux INP, CNRS, Université de Bordeaux, UMR 5800, 33400 Talence, France.

Institute of Applied Sciences, University of Sciences, Techniques and Technologies of Bamako, Bamako, Mali.

出版信息

Sensors (Basel). 2021 Nov 18;21(22):7656. doi: 10.3390/s21227656.

Abstract

Internet of Things (IoT) applications bring evolved and intelligent services that can help improve users' daily lives. These applications include home automation, health care, and smart agriculture. However, IoT development and adoption face various security and privacy challenges that need to be overcome. As a promising security paradigm, context-aware security enables one to enforce security and privacy mechanisms adaptively. Moreover, with the advancements in edge computing, context-aware security services can dynamically be placed close to a user's location and enable the support of low latency communication and mobility. Therefore, the design of an adaptive and decentralized access control mechanism becomes a necessity. In this paper, we propose a decentralized context-aware authorization management as a service based on the blockchain. The proposed architecture extends the Authentication and Authorization for Constrained Environments (ACE) framework with blockchain technology and context-awareness capabilities. Instead of a classic Open Authorization 2.0 (OAuth) access token, it uses a new contextual access token. The evaluation results show our proposition's effectiveness and advantages in terms of usability, security, low latency, and energy consumption.

摘要

物联网 (IoT) 应用带来了更先进、更智能的服务,可以帮助改善用户的日常生活。这些应用包括家庭自动化、医疗保健和智能农业。然而,物联网的发展和采用面临着各种安全和隐私挑战,需要加以克服。作为一种有前途的安全模式,上下文感知安全可以实现自适应地实施安全和隐私机制。此外,随着边缘计算的发展,上下文感知安全服务可以动态地部署在用户附近,并支持低延迟通信和移动性。因此,设计自适应和分散的访问控制机制变得非常必要。在本文中,我们提出了一种基于区块链的去中心化上下文感知授权管理即服务。所提出的架构通过区块链技术和上下文感知功能扩展了受限环境的认证和授权 (ACE) 框架。它使用新的上下文访问令牌代替经典的 Open Authorization 2.0 (OAuth) 访问令牌。评估结果表明,我们的方案在可用性、安全性、低延迟和能耗方面具有有效性和优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff39/8619443/5520577f16c2/sensors-21-07656-g001.jpg

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