Traffic-aware reconfigurable architecture for fault-tolerant 2D mesh NoCs

Poona Bahrebar, D. Stroobandt
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引用次数: 3

Abstract

With the aggressive scaling of the VLSI technology, Networks-on-Chip (NoCs) are becoming more susceptible to faults. Therefore, designing reliable and efficient NoCs is of significant importance. The rerouting approach which is employed in most of the fault-tolerant methods causes the network performance to degrade considerably due to taking longer paths and creating hotspots around the faults. Moreover, they cannot adapt to the dynamic traffic distribution in the network. Considering the increasing demands for real-time systems, the necessity for designing reconfigurable and robust NoCs is even more pronounced. In this paper, a dynamically reconfigurable technique is proposed to address fault-tolerance and minimal routing in mesh NoCs. To accomplish this goal, the router architecture is modified to enable the frequently communicating nodes to bypass the faulty router and communicate through shorter paths. Thus, not only the rerouting is minimized, the connectivity of the network is maintained in the vicinity of faults. The experimental results validate the performance and reliability of the proposed technique with a small hardware overhead.
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容错二维网格noc的流量感知可重构架构
随着超大规模集成电路技术的迅猛发展,片上网络(noc)越来越容易出现故障。因此,设计可靠、高效的noc具有重要意义。大多数容错方法采用的重路由方法由于需要较长的路径和在故障周围产生热点而导致网络性能显著下降。而且,它们不能适应网络中流量的动态分布。考虑到对实时系统日益增长的需求,设计可重构和健壮的noc的必要性更加明显。本文提出了一种动态可重构技术来解决网状网络网络中的容错和最小路由问题。为了实现这一目标,修改了路由器架构,使频繁通信的节点能够绕过故障路由器,通过更短的路径进行通信。这样,不仅可以最大限度地减少重路由,而且可以在故障附近保持网络的连通性。实验结果验证了该技术的性能和可靠性,且硬件开销小。
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