An authenticated hierarchical asymmetric group key agreement protocol based on identity

Yong Gan, Bingli Wang, Yuan Zhuang, Zengyu Cai, Qikun Zhang
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Abstract

Asymmetric group key agreement protocol is to negotiate a shared group encryption key. Each member can calculate a decryption key corresponding to the encryption key. With the rapid development of network and system technology, secure information exchange has been one of the foci. In this paper, we propose an authenticated hierarchical asymmetric group key agreement protocol based on identity. Based on the realisation of a round of asymmetric group key agreement, the protocol carries out a second round of agreement. Different levels of secrets exchange information between a group of players with different permissions as the number of rounds increases, which can achieve anonymity and authentication and support dynamic group key updating of nodes to achieve forward and backward security of group key. The protocol proved to be secure under the assumption of bilinear computational Diffie-Hellman problem. The performance analysis shows that the proposed scheme is efficient.
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一种基于身份认证的分层非对称组密钥协议
非对称组密钥协议是协商一个共享的组加密密钥。每个成员可以计算出与加密密钥对应的解密密钥。随着网络和系统技术的飞速发展,信息安全交换已成为人们关注的焦点之一。本文提出了一种基于身份的认证层次非对称组密钥协商协议。在实现一轮非对称组密钥协商的基础上,进行第二轮协商。随着轮次的增加,不同级别的秘密在不同权限的一组玩家之间交换信息,可以实现匿名和认证,支持节点的动态组密钥更新,实现组密钥的前向和后向安全。在双线性计算Diffie-Hellman问题的假设下,证明了该协议是安全的。性能分析表明,该方案是有效的。
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