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Efficient Rekeying Framework for SecureMulticast with Diverse-Subscription-Period Mobile Users

机译:订阅期不同的移动用户的SecureMulticast高效密钥更新框架

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Group key management (GKM) in mobile communication is important to enable access control for a group of users. A major issue in GKM is how to minimize the communication cost for group rekeying. To design the optimal GKM, researchers have assumed that all group members have the same leaving probabilities and that the tree is balanced and complete to simplify analysis. In the real mobile computing environment, however, these assumptions are impractical and may lead to a large gap between the impractical analysis and the measurement in real-life situations, thus allowing for GKM schemes to incorporate only a specific number of users. In this paper, we propose a new GKM framework supporting more general cases that do not require these assumptions. Our framework consists of two algorithms: one for initial construction of a basic key-tree and another for optimizing the key-tree after membership changes. The first algorithm enables the framework to generate an optimal key-tree that reflects the characteristics of users’ leaving probabilities, and the second algorithm allows continual maintenance of communication with less overhead in group rekeying. Through simulations, we show that our GKM framework outperforms the previous one which is known to be the best balanced and complete structure.
机译:移动通信中的组密钥管理(GKM)对于启用一组用户的访问控制很重要。 GKM中的一个主要问题是如何最大程度地减少用于组密钥更新的通信成本。为了设计最佳的GKM,研究人员已经假设所有组成员具有相同的离开概率,并且树是平衡且完整的以简化分析。但是,在实际的移动计算环境中,这些假设是不切实际的,并且可能导致在现实情况下不切实际的分析与测量之间的巨大差距,因此允许GKM方案仅包含特定数量的用户。在本文中,我们提出了一个新的GKM框架,该框架支持不需要这些假设的更一般的情况。我们的框架包含两种算法:一种用于基本密钥树的初始构建,另一种用于在成员资格更改后优化密钥树。第一种算法使框架能够生成反映用户离开概率特征的最佳密钥树,第二种算法允许以较少的组密钥更新开销连续维护通信。通过仿真,我们表明我们的GKM框架优于上一个框架,该框架被认为是最佳的平衡和完整的结构。

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