On the complexity of a fault-tolerance model for multicomputer systems

A. D. Oh, Hyeong-Ah Choi, A. Esfahanian
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引用次数: 1

Abstract

In topological design of multicomputer systems (e.g., the hypercube), the edge- and vertex-connectivities have traditionally been used as deterministic measures of fault-tolerance. These measures have been noted to have some deficiencies and as a result several generalizations of graph connectivity have been proposed. In this paper, the authors examine some instances of the connectivity generalization proposed by Esfahanian and Hakimi, (1988). This generalization of graph connectivity can be used to model the fault-tolerance analysis of multicomputers in which any set S of the multicomputer components is considered fault free if the set S does not satisfy some given topological property rho . Using this model and different definitions of rho , the authors establish the complexity of analyzing the fault-tolerance of multicomputers.<>
多机系统容错模型的复杂性
在多计算机系统(如超立方体)的拓扑设计中,边缘和顶点的连通性传统上被用作容错的确定性度量。人们注意到这些方法有一些不足,因此提出了几种图连通性的推广方法。在本文中,作者考察了Esfahanian和Hakimi(1988)提出的连通性泛化的一些实例。这种图连通性的推广可用于多计算机容错分析的建模,其中如果多计算机组件的任何集合S不满足给定的拓扑性质rho,则认为该集合S是无故障的。利用该模型和rho的不同定义,建立了多机容错分析的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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