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Unconditionally secure message transmission in arbitrary directed synchronous networks tolerating generalized mixed adversary

机译:无条件安全的消息传输,可容许广义混合对手的任意定向同步网络中的传输

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In this paper, we re-visit the problem of unconditionally secure message transmission (USMT) from a sender S to a receiver R, who are part of a distributed synchronous network, modeled as an arbitrary directed graph. Some of the intermediate nodes between S and R can be under the control of an adversary having unbounded computing power. Desmedt and Wang [4] have given the characterization of USMT in directed networks. However, in their model, the underlying network is abstracted as directed node disjoint paths (also called as wires/channels) between S and R, where the intermediate nodes are oblivious, message passing nodes and perform no other computation. In this work, we first show that the characterization of USMT given by Desmedt et.al [4] does not hold good for arbitrary directed networks, where the intermediate nodes can perform some computation, beside acting as message forwarding nodes. We then give the characterization of USMT in arbitrary directed networks, considering the entire network as a whole. As far our knowledge is concerned, this is the first ever characterization of USMT in arbitrary directed networks.
机译:在本文中,我们将无条件安全消息传输(USMT)从发件人S重新访问到接收器R,该接收器R,谁是分布式同步网络的一部分,被建模为任意定向图。 S和R之间的一些中间节点可以在具有无界计算能力的对手的控制下。 Desmedt和Wang [4]给出了在定向网络中的USMT的表征。然而,在其模型中,底层网络被抽象为S和R之间的指示节点不相交路径(也称为导线/通道),其中中间节点是令人沮丧的,消息传递节点并执行其他计算。在这项工作中,我们首先表明Desmedt et.Al [4]给出的USMT的表征不适用于任意定向网络,其中中间节点可以在作为消息转发节点的旁边执行一些计算。然后,我们在任意定向网络中展示USMT,考虑整个网络。目前我们的知识涉及,这是在任意定向网络中首次表征USMT。

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