首页> 外文会议>2018 IEEE 23rd Pacific Rim International Symposium on Dependable Computing >Restructuring Mesh-Connected Processor Arrays with Spares on Four Sides by Orthogonal Side Rotation
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Restructuring Mesh-Connected Processor Arrays with Spares on Four Sides by Orthogonal Side Rotation

机译:通过正交侧旋转重构四个备用的网格连接处理器阵列

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摘要

An array with spares on four sides and the restructuring algorithm for it were proposed in [1]. However, the restructuring algorithm described in [1] is too complicated to be realized in hardware. Here, we propose a method to improve such the situation. First, the array is considered to be an (N +2) (N +2) array if four PEs are added to the four corners of the array and the spares are included. The (N+2) (N+2) array is divided into four subarrays, each of which is of size (N=2 + 1)(N=2 + 1), and the orthogonal side rotation introduced here is individually applied to each subarray. The reliabilities are given by computer simulation. They fairly increase, comparing with those in [1].
机译:在[1]中提出了一个四边有备用的数组及其重组算法。但是,[1]中描述的重组算法过于复杂,无法在硬件中实现。在这里,我们提出一种改善这种情况的方法。首先,如果将四个PE添加到阵列的四个角并包含备用磁盘,则该阵列被视为(N +2)(N +2)阵列。 (N + 2)(N + 2)数组分为四个子数组,每个子数组的大小为(N = 2 +1)(N = 2 +1),这里介绍的正交侧旋转分别应用于每个子数组。可靠性通过计算机仿真给出。与[1]中的相比,它们增加了。

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