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Anonymous Networking amidst Active Adversaries

机译:Anonymous网络在积极的对手中

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The problem of anonymous wireless networking is considered when adversaries who monitor the transmissions in the network are also capable of compromising a fraction of nodes to extract network information. For a given level of network performance, as measured by network throughput, the problem of maximizing anonymity is studied from a game-theoretic perspective. The metric of anonymity considered is the conditional entropy of network routes given the monitored packet transmission times. In order to provide anonymity, a random subset of nodes (referred to as covert relays) are chosen to generate independent transmission schedules. These covert relays, unless compromised, can effectively hide the flow of traffic through them. Depending on the routes and the throughput requirement, the network designer needs to optimize the choice of covert relays such that anonymity is maximized. Whereas, the eavesdropper needs to optimize the choice of nodes to compromise subject to a constraint on maximum number of monitored nodes, such that the anonymity of the network routes is minimized. This problem is posed as a two player zero-sum game, and it is shown that a unique Nash equilibrium exists for a general category of finite networks. Using numerical examples, the tradeoff between the achievable anonymity and the power of the adversary is demonstrated as a function of the throughput for passive and active adversaries.
机译:当监视网络中传输的对手也能够损害节点的一部分以提取网络信息时,考虑匿名无线网络的问题。对于给定水平的网络性能,从网络吞吐量测量时,从游戏理论的角度研究了最大化匿名性的问题。考虑到被监视的分组传输时间的网络路线的条件熵被考虑的度量标准。为了提供匿名,选择任随机节点(称为封面中继)以生成独立的传输时间表。除非受到损害,否则这些隐蔽继电器可以有效地隐藏流量流过它们。根据路线和吞吐量要求,网络设计人员需要优化隐蔽继电器的选择,使得匿名是最大化的。而,窃听者需要的节点到折中主题的选择优化对监视节点的最大数目,使得网络路由的匿名被最小化的约束条件。此问题被构成为两个玩家零和游戏,并显示了用于有限网络一般类别的唯一纳什均衡。使用数值例子,作为被动和活性对手的吞吐量的函数,证明了可实现的匿名和对手的力量之间的权衡。

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