Reliability Evaluation of Bicube-Based Multiprocessor System under the g-Good-Neighbor Restriction

Jiafei Liu, Shuming Zhou, E. Cheng, Gaolin Chen, Min Li
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引用次数: 1

Abstract

Multiprocessor systems are commonly deployed for big data analysis because of evolution in technologies such as cloud computing, IoT, social network and so on. Reliability evaluation is of significant importance for maintenance and improvement of fault tolerance for multiprocessor systems, and system-level diagnosis is a primary strategy to identify the faulty processors in the systems. In this paper, we first determine the [Formula: see text]-good-neighbor connectivity of the [Formula: see text]-dimensional Bicube-based multiprocessor system [Formula: see text], a novel variant of hypercube. Besides, we establish the [Formula: see text]-good-neighbor diagnosability of the Bicube-based multiprocessor system [Formula: see text] under the PMC and MM* models.
基于双立方体的多处理机系统在g-近邻约束下的可靠性评估
由于云计算、物联网、社交网络等技术的发展,多处理器系统通常用于大数据分析。可靠性评估对于多处理机系统的维护和容错性的提高具有重要意义,而系统级诊断是识别系统中故障处理机的主要策略。在本文中,我们首先确定了[公式:见文]-基于多维立方体的多处理器系统[公式:见文]的睦邻连通性[公式:见文],这是超立方体的一种新变体。此外,我们建立了基于biccube的多处理器系统在PMC和MM*模型下的睦邻可诊断性[公式:见文本]。
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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