Key Agreement Protocol Based on Chaotic Authenticated Encryption Scheme

Ta Thi Kim Hue, N. X. Quyen, T. Hoang
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Abstract

This paper proposes a shared secret key exchange based on a lightweight chaotic authenticated encryption. The Standard map is utilized for a keyed-hash function and the hash function is used to construct an Encrypt-then-MAC using the counter mode of the lightweight block cipher. Then, the Chebyshev polynomial is employed for the public key encryption in the key agreement scheme. Security analysis shows the results that the integration of the two chaotic maps enhances confidentiality, integrity, and authentication for the key agreement protocol. Hardware design of the proposed authenticated encryption scheme with the Lightweight Counter Mode shows that it is suitable for embedded systems due to low resource utilization.
基于混沌认证加密方案的密钥协商协议
提出了一种基于轻量级混沌认证加密的共享密钥交换方案。标准映射用于密钥哈希函数,哈希函数用于使用轻量级分组密码的计数器模式构造加密-然后mac。然后,将切比雪夫多项式用于密钥协议方案中的公钥加密。安全性分析结果表明,两个混沌映射的集成增强了密钥协议的机密性、完整性和认证性。基于轻量级计数器模式的认证加密方案的硬件设计表明,由于其资源利用率低,适合嵌入式系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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