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首页> 外文期刊>Mathematical Problems in Engineering >A Probabilistic Spatial Distribution Model for Wire Faults in Parallel Network-on-Chip Links
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A Probabilistic Spatial Distribution Model for Wire Faults in Parallel Network-on-Chip Links

机译:片上并行网络链路中线路故障的概率空间分布模型

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摘要

High-performance chip multiprocessors contain numerous parallel-processing cores where a fabric devised as a network-on-chip (NoC) efficiently handles their escalating intertile communication demands. Unfortunately, prolonged operational stresses cause accelerated physically induced wearout leading to permanent metal wire faults in links. Where only a subset of wires may malfunction, enduring healthy wires are leveraged to sustain connectivity when a partially faulty link recovery mechanism is utilized, where its data recovery latency overhead is proportional to the number of consecutive faulty wires. With NoC link failure models being ultimately important, albeit being absent from existing literature, the construction of a mathematical model towards the understanding of the distribution of wire faults in parallel on-chip links is very critical. This paper steps in such a direction, where the objective is to find the probability of having a "fault segment" consisting of a certain number of consecutive "faulty" wires in a parallel NoC link. First, it is shown how the given problem can be reduced to an equivalent combinatorial problem through partitions and necklaces. Then the proposed algorithm counts certain classes of necklaces by making a separation between periodic and aperiodic cases. Finally, the resulting analytical model is tested successfully against a far more costly brute-force algorithm.
机译:高性能芯片多处理器包含许多并行处理内核,其中设计为片上网络(NoC)的结构可以有效地满足其不断增长的多样化通信需求。不幸的是,长时间的工作应力会导致物理上加速的磨损,从而导致链节中的永久性金属线故障。在只有一部分子线可能发生故障的情况下,当使用部分故障的链路恢复机制时,可以利用耐久的健康电线来维持连接性,其中其数据恢复延迟开销与连续的故障线的数量成比例。尽管没有现有文献,但NoC链路故障模型最终至关重要,因此,建立一种数学模型以了解并行片上链路中的导线故障分布非常重要。本文朝着这样的方向发展,目的是找出在并行NoC链路中具有由一定数量的连续“故障”导线组成的“故障段”的可能性。首先,它显示了如何通过隔板和项链将给定的问题简化为等效的组合问题。然后,提出的算法通过区分周期性和非周期性案例来对某些类别的项链进行计数。最后,针对昂贵得多的蛮力算法成功测试了所得的分析模型。

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