安全组间多播通信的密钥分配与更新

Weichao Wang, B. Bhargava
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引用次数: 23

摘要

群通信已成为无线网络的重要组成部分。本文重点研究了系统中存在多个组的环境,组内和组间的多播流量都必须由密钥保护。我们提出了一种将多项式与平面表相结合的机制,以实现个人密钥共享分配和组更改时的有效密钥刷新。提出的机制通过真广播来分发密钥。本研究的贡献包括:(1)通过将非对称加密算法转换为对称加密方法,避免了繁重的计算,提高了组播流量的处理效率和无线节点的功耗。当组成员更改时,组管理器不必生成公私密钥对。(2)由于采用了个人密钥共享,攻击者模仿其他节点变得更加困难。无线节点的额外存储开销和密钥刷新期间增加的广播流量是合理的。此外,我们还描述了在合谋攻击和批量组成员更改等复杂场景下提高该机制鲁棒性的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Key distribution and update for secure inter-group multicast communication
Group communication has become an important component in wireless networks. In this paper, we focus on the environments in which multiple groups coexist in the system, and both intra and inter group multicast traffic must be protected by secret keys. We propose a mechanism that integrates polynomials with flat tables to achieve personal key share distribution and efficient key refreshment during group changes. The proposed mechanism distributes keys via true broadcast. The contributions of the research include: (1) By switching from asymmetric algorithms to symmetric encryption methods, the proposed mechanism avoids heavy computation, and improves the processing efficiency of multicast traffic and the power usage at the wireless nodes. The group managers do not have to generate public-private key pairs when the group member changes. (2) It becomes more difficult for an attacker to impersonate another node since personal key shares are adopted. The additional storage overhead at the wireless nodes and the increased broadcast traffic during key refreshment are justified. In addition, we describe techniques to improve the robustness of the proposed mechanism under the complicated scenarios such as collusive attacks and batch group member changes.
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