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首页> 外文期刊>Journal of network and computer applications >A temporal-credential-based mutual authentication and key agreement scheme for wireless sensor networks
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A temporal-credential-based mutual authentication and key agreement scheme for wireless sensor networks

机译:基于时间凭证的无线传感器网络相互认证和密钥协商方案

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摘要

Wireless sensor network (WSN) can be deployed in any unattended environment. With the new developed loT (Internet of Things) technology, remote authorized users are allowed to access reliable sensor nodes to obtain data and even are allowed to send commands to the nodes in the WSN. Because of the resource constrained nature of sensor nodes, it is important to design a secure, effective and lightweight authentication and key agreement scheme. The gateway node (GWN) plays a crucial role in the WSN as all data transmitted to the outside network must pass through it. We propose a temporal-credentiai-based mutual authentication scheme among the user, GWN and the sensor node. With the help of the password-based authentication, GWN can issue a temporal credential to each user and sensor node. For a user, his/her temporal credential can be securely protected and stored openly in a smart card. For a sensor node, its temporal credential is related to its identity and must privately stored in its storage medium. Furthermore, with the help of GWN, a lightweight key agreement scheme is proposed to embed into our protocol. The protocol only needs hash and XOR computations. The results of security and performance analysis demonstrate that the proposed scheme provides relatively more security features and high security level without increasing too much overhead of communication, computation and storage. It is realistic and well adapted for resource-constrained wireless sensor networks.
机译:无线传感器网络(WSN)可以部署在任何无人值守的环境中。借助新开发的loT(物联网)技术,远程授权用户可以访问可靠的传感器节点以获取数据,甚至可以向WSN中的节点发送命令。由于传感器节点的资源受限性质,因此设计安全,有效且轻量的身份验证和密钥协商方案非常重要。网关节点(GWN)在WSN中起着至关重要的作用,因为传输到外部网络的所有数据都必须通过它。我们提出了在用户,GWN和传感器节点之间的基于时间凭据的相互认证方案。借助基于密码的身份验证,GWN可以向每个用户和传感器节点颁发时间凭证。对于用户而言,可以安全地保护他/她的时间凭证并将其公开存储在智能卡中。对于传感器节点,其时间凭证与其身份有关,并且必须私下存储在其存储介质中。此外,在GWN的帮助下,提出了一种轻量级密钥协议方案,该方案被嵌入到我们的协议中。该协议仅需要哈希和XOR计算。安全性和性能分析的结果表明,该方案在不增加通信,计算和存储开销的情况下,提供了相对更多的安全特性和较高的安全级别。它是现实的,非常适合资源受限的无线传感器网络。

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