首页> 外文期刊>International Journal of Distributed Sensor Networks >PAuthKey: A Pervasive Authentication Protocol and Key Establishment Scheme for Wireless Sensor Networks in Distributed IoT Applications
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PAuthKey: A Pervasive Authentication Protocol and Key Establishment Scheme for Wireless Sensor Networks in Distributed IoT Applications

机译:PAuthKey:分布式物联网应用中无线传感器网络的普遍认证协议和密钥建立方案

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Wireless sensor Networks (WSNs) deployed in distributed Internet of Things (IoT) applications should be integrated into the Internet. According to the distributed architecture, sensor nodes measure data, process, exchange information, and perform collaboratively with other sensor nodes and end-users, which can be internal or external to the network. In order to maintain the trustworthy connectivity and the accessibility of distributed IoT, it is important to establish secure links for end-to-end communication with a strong pervasive authentication mechanism. However, due to the resource constraints and heterogeneous characteristics of the devices, traditional authentication and key management schemes are not effective for such applications. This paper proposes a pervasive lightweight authentication and keying mechanism for WSNs in distributed IoT applications, in which the sensor nodes can establish secured links with peer sensor nodes and end-users. The established authentication scheme PAuthKey is based on implicit certificates and it provides application level end-to-end security. A comprehensive description for the scenario based behavior of the protocol is presented. With the performance evaluation and the security analysis, it is justified that the proposed scheme is viable to deploy in the resource constrained WSNs.
机译:部署在分布式物联网(IoT)应用程序中的无线传感器网络(WSN)应该集成到Internet中。根据分布式体系结构,传感器节点可以测量数据,处理,交换信息并与其他传感器节点和最终用户(可以在网络内部或外部)协作执行。为了维持可信赖的连接性和分布式IoT的可访问性,重要的是建立具有强大的普遍身份验证机制的端到端通信的安全链接。但是,由于设备的资源限制和异构特性,传统的身份验证和密钥管理方案对于此类应用无效。本文提出了一种用于分布式IoT应用中WSN的普遍轻量级身份验证和密钥机制,其中传感器节点可以与对等传感器节点和最终用户建立安全链接。建立的身份验证方案PAuthKey基于隐式证书,并且提供应用程序级别的端到端安全性。给出了基于场景的协议行为的全面描述。通过性能评估和安全性分析,证明了该方案在资源受限的无线传感器网络中的可行性。

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