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Exploration of a reconfigurable 2D mesh network-on-chip architecture and a topology reconfiguration algorithm

机译:探索可重构2D网状片上网络架构和拓扑重构算法

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A novel reconfigurable 2D mesh Network-on-Chip (NoC) architecture (REmesh) and a topology reconfiguration algorithm (TRARE) are proposed in this paper. Compared with a conventional 2D mesh, REmesh, which employs a few more routers and multiplexers, can be easily reconfigured to restore a 2D mesh topology to tolerant core faults in NoCs. Based on REmesh, TRARE repeatedly categorizes routers, connects cores with routers, and eventually finds out a reconfiguration solution. Simulation results show that in the topologies which sizes do not exceed 7×8, more than 90% successful reconfiguration rate can be guaranteed when less than 9% of the total cores are faulty. Simulation also suggests that when the number of faulty cores reaches the number of redundant cores, more redundancy should be added to ensure high successful reconfiguration rate.
机译:提出了一种新颖的可重构二维网格片上网络(NoC)架构(REmesh)和一种拓扑重构算法(TRARE)。与传统的2D网格相比,使用更多路由器和多路复用器的REmesh可以轻松地重新配置,以恢复2D网格拓扑以容忍NoC中的核心故障。基于REmesh,TRARE反复对路由器进行分类,将核心与路由器连接,最终找到一种重新配置解决方案。仿真结果表明,在大小不超过7×8的拓扑中,当少于9%的内核发生故障时,可以保证90%以上的成功重新配置率。仿真还表明,当故障核心的数量达到冗余核心的数量时,应添加更多的冗余以确保高成功的重新配置率。

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