基于环面拓扑的柔性备核容错片上网络设计

P. V. Bhanu, P. Kulkarni, J. Soumya, Linga Reddy Cenkeramaddi, Henning Idsøe
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引用次数: 12

摘要

在芯片上制造的IP核密度的增加带来了片上通信和散热的挑战。为了克服这些问题,引入了基于片上网络(NoC)的通信架构。在纳米尺度时代,noc容易出现故障,从而导致性能下降和不可靠。因此,需要有效的容错方法,以使系统在不同组件故障的情况下可靠。提出了一种基于环面拓扑的容错NoC设计方法。通过在环面网络中选择备用核心的最佳位置来处理与故障核心相关的通信。在此基础上,提出了一种基于元启发式的粒子群优化算法(PSO),以找到通信成本最小的备用核心的合适位置。我们通过改变网络大小和网络中的故障百分比,对文献中报告的几个应用程序基准进行了实验。结果表明,与其他方法相比,通信成本显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Torus Topology based Fault-Tolerant Network-on-Chip Design with Flexible Spare Core Placement
The increase in the density of the IP cores being fabricated on a chip poses on-chip communication challenges and heat dissipation. To overcome these issues, Network-onChip (NoC) based communication architecture is introduced. In the nanoscale era NoCs are prone to faults which results in performance degradation and un-reliability. Hence efficient fault-tolerant methods are required to make the system reliable in contrast to diverse component failures. This paper presents a flexible spare core placement in torus topology based faulttolerant NoC design. The communications related to the failed core is taken care by selecting the best position for a spare core in the torus network. By considering this we propose a metaheuristic based Particle Swarm Optimization (PSO) technique to find suitable position for the spare core that minimizes the communication cost. We have experimented with several application benchmarks reported in the literature by varying the network size and by varying the fault-percentage in the network. The results show significant reduction in terms of communication cost compared to other approaches.
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