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Scalable RFID security framework and protocol supporting Internet of Things

机译:支持物联网的可扩展RFID安全框架和协议

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Radio-frequency identification (RFID) is seen as one of the requirements for the implementation of the Internet-of-Things (IoT). However, an RFID system has to be equipped with a holistic security framework for a secure and scalable operation. Although much work has been done to provide privacy and anonymity, little focus has been given to performance, scalability and customizability issues to support robust implementation of IoT. Also, existing protocols suffer from a number of deficiencies such as insecure or inefficient identification techniques, throughput delay and inadaptability. In this paper, we propose a novel identification technique based on a hybrid approach (group-based approach and collaborative approach) and security check handoff (SCH) for RFID systems with mobility. The proposed protocol provides customizability and adaptability as well as ensuring the secure and scalable deployment of an RFID system to support a robust distributed structure such as the IoT. The protocol has an extra fold of protection against malware using an incorporated malware detection technique. We evaluated the protocol using a randomness battery test and the results show that the protocol offers better security, scalability and customizability than the existing protocols.
机译:射频识别(RFID)被视为实现物联网(IoT)的要求之一。但是,RFID系统必须配备完整的安全框架以实现安全和可扩展的操作。尽管已经做了很多工作来提供隐私和匿名性,但是很少关注性能,可伸缩性和可定制性问题以支持物联网的稳健实施。而且,现有协议还具有许多缺陷,例如不安全或效率低的识别技术,吞吐量延迟和不适应性。在本文中,我们提出了一种基于混合方法(基于组的方法和协作方法)和具有移动性的RFID系统的安全检查切换(SCH)的新颖识别技术。所提出的协议提供了可定制性和适应性,并确保了RFID系统的安全和可扩展部署,以支持诸如IoT的强大分布式结构。使用内置的恶意软件检测技术,该协议可额外防范恶意软件。我们使用随机性电池测试评估了该协议,结果表明该协议提供了比现有协议更好的安全性,可伸缩性和可定制性。

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