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首页> 外文期刊>Journal of circuits, systems and computers >Algorithms for Reconfiguring NoC-Based Fault-Tolerant Multiprocessor Arrays
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Algorithms for Reconfiguring NoC-Based Fault-Tolerant Multiprocessor Arrays

机译:用于重新配置基于NoC的容错多处理器阵列的算法

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This paper investigates the techniques to construct high-quality target processor array (faultfree logical subarray) from a physical array with faulty processing elements (PEs), where afixed number of spare PEs are pre-integrated that can be used to replace the faulty ones when necessary. A reconfiguration algorithm is successfully developed based on our proposed novel shifting operations that can efficiently select proper spare PEs to replace the faulty ones. Then, the initial target array is further refined by a carefully designed tabu search algorithm. We also consider the problem of constructing a fault-free subarray with given size, instead of the original size, which is often required in energy-efficient MPSoC design. We propose two efficient heuristic algorithms to construct target arrays of given sizes leveraging a sliding window on the physical array. Simulation results show that the improvements of the proposed algorithms over the state of the art are 19% and 16%, in terms of congestion factor and distance factor, respectively, for the case that all faulty PEs can be replaced using the spare ones. For the case of finding 64 x 64 target array on 128 x 128 host array, the proposed heuristic algorithm saves the running time up to 99% while the solution quality keeps nearly unchanged, in comparison with the baseline algorithms.
机译:本文研究了从具有故障处理元件(PE)的物理阵列构造高质量目标处理器阵列(无故障逻辑子阵列)的技术,其中预先集成了一定数量的备用PE,这些备用PE可以在出现故障时替换故障PE。必要。基于我们提出的新颖移位操作成功开发了一种重新配置算法,该算法可以有效地选择适当的备用PE来替换有故障的PE。然后,通过精心设计的禁忌搜索算法进一步完善初始目标阵列。我们还考虑了构造具有给定大小而不是原始大小的无故障子阵列的问题,这在节能型MPSoC设计中通常是必需的。我们提出了两种有效的启发式算法,以利用物理阵列上的滑动窗口构造给定大小的目标阵列。仿真结果表明,在所有故障PE都可以用备用PE替换的情况下,在拥塞因子和距离因子方面,所提出算法的改进程度分别为19%和16%。对于在128 x 128主机阵列上找到64 x 64目标阵列的情况,与基线算法相比,所提出的启发式算法可节省高达99%的运行时间,而解决方案质量几乎保持不变。

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