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Efficient and Secure Temporal Credential-Based Authenticated Key Agreement Using Extended Chaotic Maps for Wireless Sensor Networks

机译:使用扩展的混沌映射的无线传感器网络的高效和安全的基于时间凭证的身份验证密钥协议

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摘要

A secure temporal credential-based authenticated key agreement scheme for Wireless Sensor Networks (WSNs) enables a user, a sensor node and a gateway node to realize mutual authentication using temporal credentials. The user and the sensor node then negotiate a common secret key with the help of the gateway node, and establish a secure and authenticated channel using this common secret key. To increase efficiency, recent temporal credential-based authenticated key agreement schemes for WSNs have been designed to involve few computational operations, such as hash and exclusive-or operations. However, these schemes cannot protect the privacy of users and withstand possible attacks. This work develops a novel temporal credential-based authenticated key agreement scheme for WSNs using extended chaotic maps, in which operations are more efficient than modular exponential computations and scalar multiplications on an elliptic curve. The proposed scheme not only provides higher security and efficiency than related schemes, but also resolves their weaknesses.
机译:用于无线传感器网络(WSN)的基于安全时间凭证的安全认证密钥协商方案使用户,传感器节点和网关节点能够使用时间凭证实现相互认证。然后,用户和传感器节点在网关节点的帮助下协商公用密钥,并使用此公用密钥建立安全且经过身份验证的通道。为了提高效率,近来针对WSN的基于时间凭证的经过身份验证的密钥协商方案已被设计为涉及很少的计算操作,例如哈希和异或操作。但是,这些方案不能保护用户的隐私并不能承受可能的攻击。这项工作使用扩展的混沌映射为WSN开发了一种新颖的基于时间凭证的认证密钥协商方案,该方案比椭圆曲线上的模块化指数计算和标量乘法更有效。所提出的方案不仅提供了比相关方案更高的安全性和效率,而且解决了它们的缺点。

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