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首页> 外文期刊>International Journal of Foundations of Computer Science >Designing fault tolerant algorithms for reconfigurable meshes
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Designing fault tolerant algorithms for reconfigurable meshes

机译:设计可重构网格的容错算法

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摘要

This paper proposes a procedure to design fault tolerant algorithms for the R-Mesh and some of its restrictive variations. This procedure first identifies a healthy sub-mesh from a faulty model using the bypass and removal fault model. Then it uses scalable algorithms to simulate the larger faulty model on the resulting healthy sub-mesh. The algorithms for the bypass model tolerates n faults in an n × n R-Mesh (LR-Mesh) and runs in O(Tlogn) (O(T)) time, where T is the execution time on the original mesh without faults. For the removal model, we design fault tolerant algorithms for some interesting variations of the R-Mesh, specifically, the NXR-Mesh and the NXLR-Mesh. We propose the first scaling simulations for these models and present a simulation of the R-Mesh on the NXR-Mesh. The results of this paper enable us to consider certain reconfigurable models in a more practical environment than previously allowed.
机译:本文提出了一种为R-Mesh及其一些限制性变化设计容错算法的过程。该过程首先使用旁路和移除故障模型从故障模型中识别出健康的子网格。然后,它使用可伸缩算法在生成的健康子网上模拟较大的故障模型。旁路模型的算法可在n×n R-Mesh(LR-Mesh)中容忍n个故障,并以O(Tlogn)(O(T))时间运行,其中T是在没有故障的原始网格上的执行时间。对于删除模型,我们为R-Mesh的一些有趣变体(特别是NXR-Mesh和NXLR-Mesh)设计了容错算法。我们建议对这些模型进行首次缩放模拟,并在NXR-Mesh上呈现R-Mesh的模拟。本文的结果使我们能够在比以前允许的更实际的环境中考虑某些可重构模型。

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