In this paper we introduce a new concept in faulttolerance, namely the global fault-tolerance of interconnection networks. We pose the problem of characterizing the fault-tolerance of an interconnection network, modelled as an undirected unweighted graph, by a scalar, in a global manner. This can be achieved by defining an adequate metric. In this paper we propose such a metric and we apply it on two comparative analysis: for three infinite families of minimum broadcast graphs (hypercubes, recursive circulants, and Kn¨odel graphs), and for five families of hypercubic graphs (butterfly, wrapped butterfly, shuffle exchange, de Bruijn, and cube connected cycles). keywords: fault-tolerance, global fault-tolerance, faulttolerance of minimum broadcast graphs.
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