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Honey WiN: Novel Honeycomb-Based Wireless NoC Architecture in Many-Core Era

机译:Honey WiN:多核时代的新型基于蜂窝的无线NoC架构

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Although NoC-based systems with many cores are commercially available, their multi-hop nature has become a bottleneck on scaling performance and energy consumption parameters. Alternatively, hybrid wireless NoC provides a postern by exploiting single-hop express links for long-distance communications. Also, there is a common wisdom that grid-like mesh is the most stable topology in conventional designs. That is why almost all of the emerging architectures had been relying on this topology as well. In this paper, first we challenge the efficiency of the grid-like mesh in emerging systems. Then, we propose Honey WiN, a hybrid reconfigurable wireless NoC architecture that relies on the honeycomb topology. The simulation results show that on average Honey WiN saves 17% of energy consumption while increases the network throughput by 10% compared to its wireless mesh counterpart.
机译:尽管具有许多内核的基于NoC的系统已在市场上出售,但其多跳特性已成为扩展性能和能耗参数的瓶颈。替代地,混合无线NoC通过利用单跳快速链接进行长距离通信来提供后代。同样,人们普遍认为,网格状网格是常规设计中最稳定的拓扑。这就是为什么几乎所有新兴架构也都依赖于这种拓扑的原因。在本文中,首先我们挑战新兴系统中类似网格的网格的效率。然后,我们提出Honey WiN,这是一种依赖蜂窝拓扑的混合可重新配置的无线NoC架构。仿真结果表明,与无线网状网络相比,Honey WiN平均可节省17%的能耗,同时将网络吞吐量提高10%。

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