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Assessing the Vulnerability of Replicated Network Services

机译:评估复制网络服务的漏洞

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Client-server networks are pervasive, fundamental, and include such key networks as the Internet, power grids, and road networks. In a client-server network, clients obtain a service by connecting to one of a redundant set of servers. These networks are vulnerable to node and link failures, causing some clients to become disconnected from the servers. We develop algorithms that quantify and bound the inherent vulnerability of a client-server network using semidefinite programming (SDP) and branch-and-cut techniques. Further, we develop a divide-and-conquer algorithm that solves the problem for large graphs. We use these techniques to show that: for the Philippine Power Grid removing just over 6% of the transmission lines will disconnect at least 20% but not more than 50% of the substations from all generators; on a large wireless mesh network disrupting 5% of wireless links between relays removes Internet access for half the relays; even after any 16% of Tier 2 ASes are removed, more than 50% of the remaining Tier 2 ASes will be connected to the Tier 1 backbone; when 300 roadblocks are erected in Michigan, it's possible to disconnect 28-43% of the population from all airports.
机译:客户-服务器网络是普遍的,基本的,并且包括诸如Internet,电网和道路网络之类的关键网络。在客户端服务器网络中,客户端通过连接到一组冗余服务器之一来获得服务。这些网络易受节点和链接故障的影响,从而导致某些客户端与服务器断开连接。我们开发了使用半定型编程(SDP)和分支剪切技术量化和限制客户端-服务器网络固有漏洞的算法。此外,我们开发了一种分而治之的算法,可以解决大型图的问题。我们使用这些技术来表明:对于菲律宾电网,仅去除6%的输电线路将使所有发电机的至少20%但不超过50%的变电站断开连接;在大型无线网状网络上,中断中继之间5%的无线链接会导致一半中继无法访问Internet;即使删除了16%的第2层AS,也将有超过50%的第2层AS被连接到第1层骨干网;在密歇根州竖立300个路障时,有可能使28-43%的人口与所有机场断开。

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