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Hybrid fault diagnosis capability analysis of hypercubes under the PMC model and MM* model

机译:PMC型号和MM *型号HyperCubes的混合故障诊断能力分析

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System level diagnosis is an important approach for the fault diagnosis of multiprocessor systems. In system level diagnosis, diagnosability is an important measure of the diagnosis capability of interconnection networks. But as a measure, diagnosability can not reflect the diagnosis capability of multiprocessor systems to link faults which may occur in real circumstances. In this paper, we propose the definition of h-edge tolerable diagnosability to better measure the diagnosis capability of interconnection networks under hybrid fault circumstances. The h-edge tolerable diagnosability of a multiprocessor system C is the maximum number of faulty nodes that the system can guarantee to locate when the number of faulty edges does not exceed h, denoted by t(h)(e)(G). The PMC model and MM model are the two most widely studied diagnosis models for the system level diagnosis of multiprocessor systems. The hypercubes are the most well-known interconnection networks. In this paper, the h-edge tolerable diagnosability of n-dimensional hypercube under the PMC and MM* model is determined as follows: t(h)(e)(Q(n)) = n - h, where 1 = h n, n = 4. (C) 2018 Elsevier B.V. All rights reserved.
机译:系统级诊断是多处理器系统故障诊断的重要方法。在系统级诊断中,诊断性是互连网络诊断能力的重要措施。但作为一种措施,诊断不能反映多处理器系统的诊断能力,以在实际情况下链接可能发生的故障。在本文中,我们提出了H-EDGE可容许诊断性的定义,以更好地测量混合故障情况下互连网络的诊断能力。多处理器系统C的H-EDGE可容许诊断性是系统可以保证当故障边缘的数量不超过H时定位的故障节点的最大数量,由t(h)(e)(e)(g)表示。 PMC模型和MM模型是多处理器系统系统级诊断的两个最广泛研究的诊断模型。超速是最着名的互连网络。在本文中,在PMC和MM *模型下的N维超立方体的H-EDGE可容许的诊断性确定如下:T(H)(e)(q(n))= n - h,其中1 < H& n,n& = 4.(c)2018年Elsevier B.v.保留所有权利。

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