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Weakness of Ultra-Lightweight Mutual Authentication PRotocol for IoT Devices Using RFlD Tags

机译:使用RFLD标签的IOT设备的超轻量级相互认证协议的弱点

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Internet of Things (IoT) has stimulated great interest in many researchers owing to its capability to connect billions of physical devices to the internet via heterogeneous access network. Security is a paramount aspect of IoT that needs to be addressed urgently to keep sensitive data private. However, from previous research studies, a number of security flaws in terms of keeping data private can be identified. Tewari and Gupta proposed an ultra-lightweight mutual authentication protocol that utilizes bitwise operation to achieve security in IoT networks that use RFID tags. The protocol is improved by Wang et. al. to prevent a full key disclosure attack. However, this paper shows that both of the protocols are susceptible to full disclosure, man-in-the-middle, tracking, and desynchronization attacks. A detailed security analysis is conducted and results are presented to prove their vulnerability. Based on the aforementioned analysis, the protocol is modified and improved using a three pass mutual authentication. GNY logic is used to formally verify the security of the protocol.
机译:由于其能力通过异构接入网络将数十亿物理设备连接到互联网的能力,事物互联网(IOT)对许多研究人员来说兴趣受到兴趣。安全性是IOT的最重要的方面,需要迫切地解决,以保持敏感数据私有。然而,从先前的研究研究中,可以识别在保持数据保密方面的许多安全缺陷。 TeWari和Gupta提出了一种超轻的相互认证协议,利用按位操作来实现使用RFID标记的IOT网络中的安全性。王等提高了协议。 al。防止完整的关键披露攻击。然而,本文表明,这两个方案易于完全披露,中间人,跟踪和去同步攻击。进行了详细的安全分析,并提出了结果以证明其脆弱性。基于上述分析,使用三次通过相互认证修改和改进协议。 GNY逻辑用于正式验证协议的安全性。

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