Towards the practical design of performance-aware resilient wireless NoC architectures

Michael Opoku Agyeman, W. Zong, T. Kanakis, K. Tong, T. Mak
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引用次数: 2

Abstract

Recently, an improved surface wave-enabled communication fabric has been proposed to solve the reliability issues of emerging hybrid wired-wireless Network-on-Chip (WiNoC) architectures. Thus, providing a promising solution to the performance and scalability demands of the fast-paced technological growth towards exascale and Big-Data processing on future System-on-Chip (SoC) design. However, WiNoCs tradeoff optimized performance for cost by restricting the number of area and power hungry wireless nodes. Consequently, in this paper, we propose a low-latency adaptive router with a low-complexity single-cycle bypassing mechanism to alleviate the performance degradation due to the slow wired routers in such emerging hybrid NoCs. The proposed router is able to redistribute traffic in the network to alleviate average packet latency at both low and high traffic conditions. As a second contribution the paper presents an experimental evaluation of a practically implemented surface wave communication fabric. By reducing the latency between the wired nodes and wireless nodes the proposed router can improve performance efficiency in terms of average packet delay by an average of 50% in WiNoCs.
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面向性能感知弹性无线NoC架构的实用设计
最近,人们提出了一种改进的表面波通信结构,以解决新兴的混合有线-无线片上网络(WiNoC)架构的可靠性问题。因此,在未来的片上系统(SoC)设计中,提供了一个有前途的解决方案,以满足快速发展的技术对百亿亿级和大数据处理的性能和可扩展性需求。然而,winoc通过限制面积和耗电无线节点的数量来权衡优化的性能和成本。因此,在本文中,我们提出了一种具有低复杂度单周期旁路机制的低延迟自适应路由器,以缓解这种新兴混合noc中由于慢速有线路由器而导致的性能下降。所提出的路由器能够在网络中重新分配流量,以减轻在低流量和高流量条件下的平均数据包延迟。作为第二贡献,本文提出了一个实际实现的表面波通信结构的实验评估。通过减少有线节点和无线节点之间的延迟,该路由器可以将winoc中平均数据包延迟的性能效率提高50%。
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