物联网分布式安全框架的设计与评价

Q3 Computer Science
Kelechi G. Eze, C. Akujuobi
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引用次数: 4

摘要

物联网的采用者面临着基于互联网的对其物联网资产的攻击激增以及技术效率低下的挑战。不幸的是,物联网过于分散,仍在发展,并面临着实施和安全方面的挑战。鉴于上述情况,我们认为物联网网络应该始终是去中心化的设计,安全应该由设计来构建。本文旨在设计和构建一个分散的物联网安全框架,旨在使新兴的物联网系统更具抵御攻击的能力,并支持复杂的通信和资源共享。该框架提高了物联网的效率和可扩展性,使易受攻击的子系统和组件成为可能的系统泄露薄弱环节,满足异构计算环境的要求。该框架的其他特性包括高效的资源共享、容错和分布式存储,支持物联网。我们讨论了设计需求,并对我们的框架进行了概念验证和评估。两种底层技术:参与者模型和区块链用于实现。我们选择参与者模型和区块链的原因是比较它们对并行物联网集成的适用性。因此,系统的评估是基于计算和内存效率、安全性和可伸缩性来执行的。我们从评估中得出结论,基于参与者的实现比基于区块链的实现具有更好的可扩展性。此外,区块链在计算上似乎比参与者更密集,不太适合物联网系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Evaluation of a Distributed Security Framework for the Internet of Things
The adopters of IoT face challenges with the surging Internet-based attacks on their IoT assets and inefficiencies within the technology. Unfortunately, IoT is overly distributed, still evolving and facing implementation and security challenges. Given the above scenario, we argue that the IoT network should always be decentralized design, and security should be built by design. The paper is the design and construction of a decentralized IoT security framework, with the goal of making emerging IoT systems more resilient to attacks and supporting complex communication and resource sharing. The framework improves efficiency and scalability in IoT, exposes vulnerable subsystems and components as possible weak links to system compromise, and meets the requirements of a heterogeneous computing environment. Other features of the framework including efficient resource sharing, fault tolerance, and distributed storage support the Internet of Things. We discuss the design requirements and carry out the implementation of Proof of Concept and evaluation of our framework. Two underlying technologies: the actor model and the blockchain were used for the implementation. Our reason for choosing the actor model and blockchain is to compare its suitability for IoT integration in parallel. Hence, evaluation of the system is performed based on computational and memory efficiency, security, and scalability. We conclude from the evaluations that the actorbased implementation has better scalability than the block-chain-based implementation. Also, the blockchain seems to be computationally more intensive than the actors and less suitable for IoT systems.
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CiteScore
3.20
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