超立方体系统不同容错策略的成本效益分析

V. Grassi
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引用次数: 3

摘要

提出了多机系统的一般模型,并计算了衡量多机系统性能的指标。由于索引依赖于平均节点间距离,因此推导了计算该距离的递归表达式。成本效益指标是根据使用绩效指数的可执行性模型来定义的。利用优度图比较了可降解超立方体和不可降解超立方体两种不同策略的成本效益。所采用的故障模型是基于部分节点故障的假设(主处理器丢失,但通信协处理器没有丢失)。在此假设下,结果表明可降解超立方体策略更具成本效益
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cost effectiveness analysis of different fault tolerance strategies for hypercube systems
A general model of a multicomputer system is presented, and an index is calculated for measuring its performance. Since the index depends on the average internode distance, recursive expressions for the evaluation of this distance are derived. A cost-effectiveness figure of merit is defined on the basis of a performability model that uses the performance index. The figure of merit is used to compare the cost effectiveness of two different strategies, the degradable hypercube and the nondegradable hypercube. The fault model adopted is based on the assumption of partial node failure (loss of the main processor but not of the communication coprocessor). Under this assumption, the result suggests that the degradable hypercube strategy is more cost effective.<>
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