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首页> 外文期刊>IEEE Transactions on Computers >Tolerating multiple faults in multistage interconnection networks with minimal extra stages
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Tolerating multiple faults in multistage interconnection networks with minimal extra stages

机译:以最少的额外级容忍多级互连网络中的多个故障

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摘要

Adams and Siegel (1982) proposed an extra stage cube interconnection network that tolerates one switch failure with one extra stage. We extend their results and discover a class of extra stage interconnection networks that tolerate multiple switch failures with a minimal number of extra stages. Adopting the same fault model as Adams and Siegel, the faulty switches can be bypassed by a pair of demultiplexer/multiplexer combinations. It is easy to show that, to maintain point to point and broadcast connectivities, there must be at least S extra stages to tolerate I switch failures. We present the first known construction of an extra stage interconnection network that meets this lower-bound. This 12-dimensional multistage interconnection network has n+f stages and tolerates I switch failures. An n-bit label called mask is used for each stage that indicates the bit differences between the two inputs coming into a common switch. We designed the fault-tolerant construction such that it repeatedly uses the singleton basis of the n-dimensional vector space as the stage mask vectors. This construction is further generalized and we prove that an n-dimensional multistage interconnection network is optimally fault-tolerant if and only if the mask vectors of every n consecutive stages span the n-dimensional vector space.
机译:亚当斯和西格尔(Adams and Siegel,1982)提出了一种额外级的立方体互连网络,该网络可以容忍一个额外一级的开关故障。我们扩展了他们的结果,发现了一类额外的阶段互连网络,这些网络可以用最少数量的额外阶段来容忍多个交换机故障。采用与Adams和Siegel相同的故障模型,可以通过一对解复用器/复用器组合来绕过故障开关。很容易证明,要保持点对点和广播的连通性,必须至少有S个额外的阶段才能容忍I开关故障。我们提出了满足此下限的额外已知级互连网络的第一个已知结构。这个12维的多级互连网络具有n + f级,可以承受I开关故障。每个级使用一个称为掩码的n位标签,该标签指示进入公共开关的两个输入之间的位差。我们设计了容错构造,以使其反复使用n维向量空间的单例基础作为阶段掩码向量。这种构造被进一步推广,并且我们证明,当且仅当每n个连续级的掩码向量跨越n维向量空间时,n维多级互连网络才具有最佳的容错能力。

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