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Regional ACO-Based Cascaded Adaptive Routing for Traffic Balancing in Mesh-Based Network-on-Chip Systems

机译:基于网格的片上网络系统中用于流量平衡的基于区域ACO的级联自适应路由

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The regular topology of mesh-based network-on-chip (NoC) provides flexible and scalable architecture for chip multiprocessor (CMP) systems. However, as the complexity of network increases, routing problems become performance bottlenecks. In the field of wide area networks (WANs), ant colony optimization (ACO) has been applied to an adaptive routing for improving performance and achieving load balancing. Nevertheless, if we directly apply ACO to NoC systems, the implementation cost of ACO is excessively high. To overcome this problem, the ACO-based adaptive routing must be reformulated while considering both router cost and NoC efficiency. This work proposes the regional ACO-based cascaded adaptive routing (RACO-CAR) scheme with the following techniques: 1) table elimination by removing redundant information, 2) table sharing by grouping pheromone information to merge table content, and 3) cascaded routing that assigns traffic to different uncongested regions to balance traffic. Our experimental results demonstrate that the RACO-CAR scheme has an improvement of 3.9-36.84 percent in saturation throughput compared with existing adaptive routing schemes. The implementation cost of the RACO-CAR router is only 37.4 percent of that of the ACO-based router with full routing table. Therefore, the proposed RACO-CAR scheme has high area efficiency, defined as saturation throughput divided by the total cost of router.
机译:基于网格的常规片上网络(NoC)的常规拓扑为芯片多处理器(CMP)系统提供了灵活且可扩展的体系结构。但是,随着网络复杂性的增加,路由问题成为性能瓶颈。在广域网(WAN)领域,蚁群优化(ACO)已应用于自适应路由,以提高性能并实现负载平衡。但是,如果直接将ACO应用于NoC系统,则ACO的实施成本过高。为了克服这个问题,必须重新考虑基于ACO的自适应路由,同时考虑路由器成本和NoC效率。这项工作采用以下技术提出了一种基于区域ACO的级联自适应路由(RACO-CAR)方案:1)通过消除冗余信息来消除表; 2)通过将信息素信息分组以合并表内容来进行表共享; 3)级联路由将流量分配到不同的非拥塞区域以平衡流量。我们的实验结果表明,与现有的自适应路由方案相比,RACO-CAR方案的饱和吞吐量提高了3.9-36.84%。 RACO-CAR路由器的实施成本仅为具有完整路由表的基于ACO的路由器的实施成本的37.4%。因此,提出的RACO-CAR方案具有较高的区域效率,定义为饱和吞吐量除以路由器的总成本。

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