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Provably Secure Group Key Management Approach Based upon Hyper-Sphere

机译:基于Hyper-Sphere的行之有效的组密钥管理方法

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Secure group communication systems have become increasingly important for many emerging network applications. An efficient and robust group key management approach is indispensable to a secure group communication system. Motivated by the theory of hyper-sphere, this paper presents a new group key management approach with a group controller (GC). In our new design, a hyper-sphere is constructed for a group and each member in the group corresponds to a point on the hyper-sphere, which is called the member’s private point. The GC computes the central point of the hyper-sphere, intuitively, whose “distance” from each member’s private point is identical. The central point is published such that each member can compute a common group key, using a function by taking each member’s private point and the central point of the hyper-sphere as the input. This approach is provably secure under the pseudo-random function (PRF) assumption. Compared with other similar schemes, by both theoretical analysis and experiments, our scheme (1) has significantly reduced memory and computation load for each group member; (2) can efficiently deal with massive membership change with only two re-keying messages, i.e., the central point of the hyper-sphere and a random number; and (3) is efficient and very scalable for large-size groups.
机译:对于许多新兴的网络应用,安全的群组通信系统已经变得越来越重要。有效且健壮的组密钥管理方法对于安全的组通信系统是必不可少的。受超球体理论的启发,本文提出了一种具有组控制器(GC)的新组密钥管理方法。在我们的新设计中,为组构造了一个超球体,组中的每个成员都对应于该超球体上的一个点,这称为成员的私有点。 GC直观地计算了超球面的中心点,它与每个成员的私有点的“距离”相同。公布中心点,以便每个成员可以使用函数,通过将每个成员的私有点和超球体的中心点作为输入来计算公共组密钥。在伪随机函数(PRF)假设下,该方法可证明是安全的。与其他类似方案相比,通过理论分析和实验,我们的方案(1)显着减少了每个组成员的内存和计算负荷; (2)只需两个重新输入密钥的消息,即超球体的中心点和一个随机数,就可以有效地应对大规模的会员变更; (3)对于大型团体而言是高效且可扩展的。

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