容错计算的未来

J. Abraham, R. Iyer, D. Gizopoulos, D. Alexandrescu, Y. Zorian
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引用次数: 2

摘要

容错(或可靠)计算一直是计算机科学与工程、电气与电子工程交叉的一个令人兴奋的研究领域。在过去的二十年中,容错研究团体产生的方法和工具的适用性已经扩展到几乎所有的应用领域。在计算系统中采用的容错方法的类型取决于:(a)预计会影响系统的故障,(b)系统运行中错误的重要性,(c)可分配给容错和可靠运行的设计、成本和功率预算。容错计算中的新解决方案和工具正在出现,以处理在当今计算环境中所有(a)、(b)和(c)都可以接受的非常广泛的值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The future of fault tolerant computing
Fault tolerant (or dependable) computing has always been an exciting research area in the intersection of computer science and engineering and electrical and electronics engineering. During the last two decades the applicability of the methods and tools that the fault tolerance research community produces has expanded to virtually all application domains. The type of fault tolerance methods employed in a computing system depend on: (a) the faults expected to affect the system, (b) the importance of errors in the system operation, (c) the design, cost and power budgets that can allocated to fault tolerance and reliable operation. New solutions and tools in fault tolerant computing are emerging to deal with the very broad spectrum of values that all (a), (b) and (c) can take in today's computing landscape.
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