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Improving the Accuracy of Reliability Models for Direct Interconnection Networks

机译:提高直接互连网络可靠性模型的准确性

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Fault-tolerance in multicomputer interconnection networks has been traditionally studied by determining the worst possible combination of faulty components that causes a network failure and then assuming that this will occur. But, the worst possible combination may occur with low probability and the routing algorithm may allow the network to work, even when there is a large number of faults. Thus, the network dependability parameters computed according to this approach will be underestimated. In a previous paper [3], we have proposed a new methodology, based on Markov chains, for evaluating interconnection network dependability. Using this methodology, we can accurately compute the network reliability behavior. In this paper we apply it to evaluate dependability parameters in a 2-D mesh, taking into account network size, routing algorithm, failure and repair rates of nodes and coverage. Finally, we compare the computed results under traditional and our approach.
机译:传统上通过确定导致网络故障的故障组件的最坏可能的组合来研究多电脑互连网络中的容错于传统上研究了导致网络故障,然后假设将发生这种情况。但是,最糟糕的组合可能以低概率发生,并且路由算法可以允许网络运行,即使存在大量故障。因此,根据该方法计算的网络可依赖性参数将被低估。在先前的论文[3]中,我们提出了一种基于马尔可夫链的新方法,用于评估互连网络可靠性。使用这种方法,我们可以准确计算网络可靠性行为。在本文中,我们将其应用于在2-D网格中评估可依赖性参数,考虑网络大小,路由算法,故障和节点的修复率和覆盖率。最后,我们将计算结果与我们的方法进行比较。

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