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Distributed Overlay Construction to Support Policy-Based Access Control

机译:分布式覆盖结构,支持基于策略的访问控制

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Overlay networks have been studied extensively in recent years as a flexible means to improving the reliability, resiliency, and performance of many networking applications. In this paper we present a novel use of overlay networks and distributed mechanisms to construct them for handling information assurance issues in networking systems. The problem is explored in the context of constructing an overlay that satisfies a given set of access control policies in decentralized information sharing systems. We formulate a new graph-theoretic optimization problem of constructing a minimum {em policy-compatible} graph, which is NP-complete. We provide efficient centralized and fully-distributed heuristics, and prove the convergence property of the distributed process. Our simulation study with synthetic and empirical data set shows that our methods result in the performance (in terms of total number of links) very close to the optimal case (within 3%) for small input, and that they can reduce the number by up to 30% compared to a method based on minimum spanning tree algorithm for larger data set.
机译:近年来,覆盖网络已被广泛研究,作为提高许多网络应用的可靠性,弹性和性能的灵活手段。在本文中,我们介绍了一种覆盖网络和分布式机制的新颖使用,以构建用于处理网络系统中的信息保证问题。在构建覆盖层的上下文中探讨了该问题,该覆盖层满足分散的信息共享系统中的给定的一组访问控制策略集。我们制定了构建最小{EM策略兼容}图的新图形 - 理论优化问题,该图为NP-Complete。我们提供高效的集中式和完全分布式的启发式机,并证明了分布式过程的收敛性。我们的仿真研究与综合和经验数据集表明,我们的方法导致性能(根据链路总数)非常接近最佳情况(3%以内)用于小输入,并且它们可以减少向上的数字与基于最小数据集的最小生成树算法的方法相比,至30%。

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