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The full-use-of-suitable-spares (FUSS) approach to hardware reconfiguration for fault-tolerant processor arrays

机译:充分利用备用资源(FUSS)方法对容错处理器阵列进行硬件重新配置

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摘要

A general approach to hardware recognition is proposed for VLSI/WSI fault-tolerant processor arrays. The technique, called full use of suitable spares (FUSS), uses an indicator vector, the surplus vector, to guide the replacement of faulty processors within an array. Analytical study of the general FUSS algorithm shows that there is a linear relationship between the array size and the area of interconnect required for reconfiguration to be 100% successful. In an instance of FUSS, called simple FUSS, reconfiguration is done by shifting up to or down the surplus vector's entries. The surplus vector is progressively updated after each column is reconfigured. The reconfiguration is successful when the surplus vector becomes null. Simple FUSS is discussed in detail and evaluated. Simulations show that when the number of faulty processors is equal to that of space processors, simple FUSS can achieve a probability of survival as high as 99%.
机译:针对VLSI / WSI容错处理器阵列,提出了一种通用的硬件识别方法。这项技术被称为“充分利用合适的备件”(FUSS),它使用指示符向量(即剩余向量)来指导阵列中故障处理器的替换。常规FUSS算法的分析研究表明,阵列大小与重新配置才能成功实现100%所需的互连区域之间存在线性关系。在称为简单FUSS的FUSS实例中,通过上移或下移剩余向量的条目来完成重新配置。重新配置每列后,剩余向量将逐步更新。当剩余向量为空时,重新配置成功。简单FUSS进行了详细讨论和评估。仿真表明,当故障处理器的数量等于空间处理器的数量时,简单的FUSS可以实现高达99%的生存概率。

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