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A Privacy-Preserving Authentication and Key Agreement Scheme with Deniability for IoT

机译:具有可否认性的IoT隐私保护认证和密钥协商方案

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User authentication for the Internet of Things (IoT) is a vital measure as it consists of numerous unattended connected devices and sensors. For security, only the user authenticated by the gateway node can access the real-time data gathered by sensor nodes. In this article, an efficient privacy-preserving authentication and key agreement scheme for IoT is developed which enables the user, the gateway node and sensor nodes to authenticate with each other. Only the trusted gateway node can determine the real identity of user; however, no other entities can get information about user’ identity by just intercepting all exchanged messages during authentication phase. The gateway cannot prove the received messages from the sender to a third party, and thus preserving the privacy of the sender. The correctness of the proposed scheme is proved to be feasible by using BAN logic, and its security is proved under the random oracle model. The execution time of the proposed scheme is evaluated and compared with existing similar schemes, and the results demonstrate that our proposed scheme is more efficient and applicable for IoT applications.
机译:物联网(IoT)的用户身份验证是一项至关重要的措施,因为它包含许多无人值守的已连接设备和传感器。为了安全起见,只有经过网关节点认证的用户才能访问传感器节点收集的实时数据。在本文中,开发了一种用于IoT的有效的隐私保护身份验证和密钥协商方案,该方案使用户,网关节点和传感器节点能够彼此进行身份验证。只有可信网关节点才能确定用户的真实身份。但是,没有其他实体可以通过在身份验证阶段拦截所有交换的消息来获取有关用户身份的信息。网关无法证明从发送方收到的消息给第三方,因此无法保护发送方的隐私。利用BAN逻辑证明了该方案的正确性,并在随机预言模型下证明了其安全性。对该方案的执行时间进行了评估,并与现有的类似方案进行了比较,结果表明,本文提出的方案效率更高,适用于物联网应用。

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