Simple and Efficient Group Key Distribution Protocol using Matrices

Pub Date : 2022-11-01 DOI:10.14429/dsj.72.17461
Indivar Gupta, Atul Pandey, D. Singh
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Abstract

Group Key Distribution (GKD) protocols are designed to distribute a group key to several users for establishing a secure communication over a public network. The central trusted authority, called the key distribution center (KDC) is in charge of distributing the group keys. For securing the communication, all the users share a common secret key in advance with KDC. In this paper, we propose a secure and efficient Group Authenticated Key Distribution (GAKD) protocol based on the simple idea of encryption in matrix rings. In this protocol, each user registers in private with the KDC, while all the other information can be transferred publicly. The scheme also supports authentication of group keys without assuming computational hard problems such as Integer Factorization Problem (IFP).The analysis of our GAKD protocol shows that the proposed protocol is resistant to reply, passive and impersonation attacks. Our construction leads to a secure, cost and computation- effective GAKD protocol.
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基于矩阵的简单高效的组密钥分发协议
组密钥分发(GKD)协议旨在将组密钥分发给多个用户,以便在公共网络上建立安全通信。称为密钥分发中心(KDC)的中央可信机构负责分发组密钥。为了确保通信的安全性,所有用户都预先与KDC共享一个公共密钥。本文基于矩阵环加密的简单思想,提出了一种安全高效的组认证密钥分发(GAKD)协议。在这个协议中,每个用户都私下向KDC注册,而所有其他信息都可以公开传输。该方案还支持组密钥的认证,而无需考虑整数分解问题(IFP)等计算难题。对GAKD协议的分析表明,该协议具有抵抗应答攻击、被动攻击和模拟攻击的能力。我们的结构导致了一个安全,成本和计算有效的GAKD协议。
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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