物联网安全中的身份验证、访问控制和可扩展性模型--综述

M Kokila, Srinivasa Reddy K
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引用次数: 0

摘要

物联网(IoT)引领人类与技术互动进入下一个阶段。在物联网的帮助下,物理物体可以生成、接收和无缝交换数据。物联网包括各种各样的应用,每种应用都专注于自动执行特定任务,并努力赋予无生命物体不受人类干预的能力。现有和即将推出的物联网应用在提高用户的便利性、生产力和自动化水平方面大有可为。要以不断扩展的方式实现这样一个世界,就必须具备高水平的安全性、隐私性、身份验证和从攻击中恢复的能力。有鉴于此,有必要对物联网应用的架构进行必要的调整,以实现物联网环境中的端到端安全性。本文全面回顾了物联网应用带来的安全相关挑战和潜在危险源。在对安全问题进行讨论后,将介绍各种新技术和成熟技术,这些技术的重点是在物联网应用中实现高度信任。机器学习、雾计算、边缘计算和区块链只是帮助物联网提供更高安全性的几项技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Authentication, access control and scalability models in Internet of Things Security–A review

The Internet of Things (IoT) leads to the next phase of human interaction with technology. With the help of the IoT, physical objects can be given the ability to generate, receive, and seamlessly trade data with one another. The IoT includes a wide variety of applications, each of which focuses on automating a specific task and works to give inanimate objects the ability to act independently of human intervention. The currently available and upcoming IoT applications hold a great deal of promise for enhancing the level of convenience, productivity, and automation enjoyed by users. High levels of security, privacy, authentication, and the ability to recover from attacks are required for the implementation of such a world in a manner that is constantly expanding. In this light, it is necessary to make the necessary adjustments to the architecture of IoT applications to accomplish end-to-end security in IoT environments. In this article, a comprehensive review of the security-related challenges and potential sources of danger posed by IoT applications is provided. Following a discussion of security concerns, a variety of new and established technologies that are focused on achieving a high degree of trust in the applications of the IoT are covered. Machine learning, fog computing, edge computing, and blockchain are just a few of the technologies that help the IoT provide greater security.

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