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Swapped (OTIS) Networks Built of Connected Basis Networks Are Maximally Fault Tolerant

机译:由连接的基础网络构建的交换(OTIS)网络具有最大的容错能力

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An optical transpose interconnection system (OTIS) network with n^2 nodes is a two-level swapped architecture built of n copies of an n-node basis network that constitute its clusters. A simple rule for intercluster connectivity (node j in cluster i connected to node i in cluster j) leads to regularity, modularity, packageability, fault tolerance, and algorithmic efficiency of the resulting networks. We prove that an OTIS (swapped) network with a connected basis network possesses maximal fault tolerance, regardless of whether its basis network is maximally fault tolerant. We also show how the corresponding maximal number of node-disjoint paths between two nodes of a swapped network can be algorithmically constructed in a manner that is independent of the existence and construction of node-disjoint paths within its basis network. Our results are stronger than previously published results and they replace a number of proofs and constructions in the literature for specific basis networks. Additionally, we use our parallel path constructions to establish that the fault diameter and wide diameter of an OTIS network is no more than 4 units greater than its diameter.
机译:具有n ^ 2个节点的光转置互连系统(OTIS)网络是两级交换体系结构,由构成其集群的n个节点基础网络的n个副本构建。集群间连接的简单规则(集群i中的节点j连接到集群j中的节点i)可导致所得网络的规则性,模块化,可打包性,容错性和算法效率。我们证明,具有连接的基础网络的OTIS(交换)网络具有最大的容错能力,无论其基础网络是否具有最大的容错能力。我们还展示了如何以算法方式构造交换网络的两个节点之间的节点不相交路径的相应最大数量,该方式独立于其基础网络内节点不相交路径的存在和构造。我们的结果比以前发表的结果要强,并且它们代替了文献中针对特定基础网络的大量证明和构造。此外,我们使用并行路径构造来确定OTIS网络的故障直径和宽直径不超过其直径的4个单位。

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