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Performance modeling and analysis of pipelined circuit switching in hypercubes with faults

机译:带有故障的超立方体中流水线电路切换的性能建模与分析

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Multicomputer systems are more susceptible to failure than conventional uniprocessor machines. This is because as the system size scales up, the probability of a component failure also increases. It is therefore essential to use fault-tolerant routing that allows messages to reach their destinations even in the presence of faults. Pipelined circuit switching (PCS) that has been employed as an efficient switching method in the design of fault-tolerant routing algorithm for reliable interprocessor networks can route a message from source to destination, even in the presence of faulty components. The analytical model of PCS for common networks (e.g., hypercube) in the absence of faulty components has recently been reported in the literature. However, none of these analytical models attempt to capture the effects of faulty nodes or links in the performance of the networks. This paper proposes a new analytical model of PCS, in the presence of faulty nodes, in the hypercube networks augmented with virtual channels. The model makes latency predictions that are in good agreement with those obtained from simulation experiments.
机译:与传统的单处理器计算机相比,多计算机系统更容易出现故障。这是因为随着系统规模的扩大,组件故障的可能性也会增加。因此,至关重要的是要使用容错路由,即使在存在错误的情况下,该路由也允许消息到达其目的地。在可靠的处理器间网络的容错路由算法设计中,已被用作有效交换方法的流水线电路交换(PCS)甚至在存在故障组件的情况下也可以将消息从源路由到目的地。最近在文献中报道了在不存在故障组件的情况下用于常见网络(例如,超立方体)的PCS的分析模型。但是,这些分析模型均未尝试捕获故障节点或链路对网络性能的影响。本文提出了一种在虚拟节点增强的超立方体网络中存在故障节点的情况下,PCS的新分析模型。该模型进行的延迟预测与从仿真实验获得的预测非常吻合。

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