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首页> 外文期刊>IEEE Transactions on Computers >Fault-tolerant processor arrays based on the 1 1/2 -track switches with flexible spare distributions
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Fault-tolerant processor arrays based on the 1 1/2 -track switches with flexible spare distributions

机译:基于带有灵活备用分配的1 1/2磁道开关的容错处理器阵列

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A mesh-connected processor array consists of many similar processing elements (PEs) which can be executed in both parallel and pipeline processing. For the implementation of an array of large numbers of processors, some fault-tolerant issues are necessary to enhance the (fabrication-time) yield and the (run-time) reliability. In this paper, we propose a fault-tolerant reconfigurable processor array using single-track switches like Kung et al.'s model. The reconfiguration process in our model is executed based on the concept of the "compensation path" like Kung et al.'s method, too. In our model, spare PEs are not necessarily put around the array, but are more flexibly put in the array by changing connections between spare PEs and nonspare PEs while retaining the connections among nonspare PEs in the same manner in Kung et al.'s model. The proposed model has such a desirable property that physical distances between logically adjacent PEs in the reconfigured array are within a constant, that is, independent of sizes of arrays. We show that the hardware overhead of the proposed model is a little greater than that of Kung et al.'s model, while the yield of the proposed model is much better than that of Kung et al.'s model.
机译:网格连接的处理器阵列由许多相似的处理元素(PE)组成,它们可以在并行处理和流水线处理中执行。为了实现大量处理器的阵列,一些容错问题对于提高(制造时间)产量和(运行时间)可靠性是必需的。在本文中,我们使用像Kung等人的模型的单轨开关提出了一种容错可重配置处理器阵列。我们模型中的重新配置过程也是基于“补偿路径”的概念执行的,就像Kung等人的方法一样。在我们的模型中,不必将备用PE放置在阵列周围,而是通过更改备用PE和非备用PE之间的连接来更灵活地放置在阵列中,同时以与Kung等人的模型相同的方式保留非备用PE之间的连接。 。所提出的模型具有期望的性质,以使得在重新配置的阵列中的逻辑上相邻的PE之间的物理距离在恒定范围内,即,与阵列的大小无关。我们表明,所提出模型的硬件开销比Kung等人模型的硬件开销要大一些,而所提出模型的产量要比Kung等人模型的好得多。

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