使用混合密码系统的安全组密钥分发

V. Kumari, D. Nagaraju, K. Soumya, K. Raju
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引用次数: 15

摘要

在面向群组的应用程序中,如会议、聊天组和交互式游戏,无数消息从一个或多个来源发送给多个用户。组播是这种面向群的应用的最佳技术,可以有效地利用网络资源。但是,在成员频繁变化的面向组协议中,安全维护是一个关键问题。可以通过更改密钥材料来实现机密性,即在每次新成员加入组或现有成员离开组时进行密钥更新。为了这个目的,前面已经提出了许多技术。在集中式方法中,单个密钥服务器负责生成和分发密钥。在分散式方法中,密钥管理器的层次结构分发密钥。在分布式密钥协议中,组成员共同生成并分发组密钥。本文采用去中心化和密钥协议相结合的方法来防止单点故障,提高系统的可靠性和性能。本文提出了一种基于混合密钥树的新技术(SGKP-1),该技术具有为密钥材料的分发建立安全通道,减少了每个成员的存储需求和负担,使成为一个新成员所需的时间最小化等优点。使用公钥和私钥加密系统的组合进一步降低了计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure Group Key Distribution Using Hybrid Cryptosystem
In group-oriented applications like conferencing, chat groups and interactive gaming myriad messages are sent from one or more sources to multiple users. Multicasting is the optimum technique for such group oriented applications with effective network resource utilization. But maintaining security is a critical issue in group oriented protocols with frequent membership changes. Confidentiality can be achieved through changing the key material, known as rekeying every time a new member joins the group or existing member leaves from the group. Many techniques have been proposed earlier for this purpose. In centralized approach, a single key server is responsible to generate and distribute keys. In decentralized approach, a hierarchy of key managers distributes the keys. In distributed key-agreement protocol, the group members collectively generate and distribute a group key. This paper uses combination of both de-centralized and key agreement approaches to prevent a single point of failures and to improve the reliability as well as the performance of the system. This paper proposes new a technique(SGKP-1), using hybrid key trees, has certain advantages like secure channel establishment for the distribution of the key material, reducing the storage requirements and burden at each member, minimization of time requirement to become a new member of a group. The computational complexity further reduced using both the combination of public and private key crypto systems.
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