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首页> 外文期刊>ACM Journal on Emerging Technologies in Computing Systems >Complex Network-Enabled Robust Wireless Network-on-Chip Architectures
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Complex Network-Enabled Robust Wireless Network-on-Chip Architectures

机译:复杂的基于网络的健壮无线片上网络架构

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The Network-on-Chip (NoC) paradigm has emerged as a scalable interconnection infrastructure for modern multicore chips. However, with growing levels of integration, the traditional NoCs suffer from high latency and energy dissipation in on-chip data transfer due to conventional multihop metal/dielectric-based interconnects. Three-dimensional integration, on-chip photonics, RF, and wireless links have been proposed as radical low-power and low-latency alternatives to the conventional planar wire-based designs. Wireless NoCs with Carbon NanoTube (CNT) antennas are shown to outperform traditional wire-based NoCs significantly in achievable data rate and energy dissipation. However, such emerging and transformative technologies will be prone to high levels of failures due to various issues related to manufacturing challenges and integration. On the other hand, several naturally occurring complex networks such as colonies of microbes and the World Wide Web are known to be inherently robust against high rates of failures and harsh environments. This article advocates adoption of such complex network-based architectures to minimize the effect of wireless link failures on the performance of the NoC. Through cycle-accurate simulations it is shown that the wireless NoC architectures inspired by natural complex networks perform better than their conventional wired counterparts even in the presence of high degrees of link failures. We demonstrate the robustness of the proposed wireless NoC architecture by incorporating both uniform and application-specific traffic patterns.
机译:片上网络(NoC)范式已经成为现代多核芯片的可扩展互连基础架构。然而,随着集成水平的提高,由于传统的基于多跳金属/介电的互连,传统的NoC在片上数据传输中遭受高延迟和能量耗散的困扰。三维集成,片上光子学,RF和无线链接已被提议作为传统的基于平面导线的设计的根本性低功耗和低延迟替代方案。带有碳纳米管(CNT)天线的无线NoC在可实现的数据速率和能量耗散方面明显优于传统的有线NoC。然而,由于与制造挑战和集成相关的各种问题,这种新兴和变革性技术将易于出现大量故障。另一方面,已知诸如微生物菌落和万维网之类的几种自然发生的复杂网络具有固有的鲁棒性,可以抵抗高失败率和恶劣环境。本文主张采用这种复杂的基于网络的体系结构,以最大程度地减少无线链路故障对NoC性能的影响。通过精确的周期仿真,可以看出,即使存在严重的链路故障,受自然复杂网络启发的无线NoC架构也比传统的有线网络性能要好。通过结合统一的和特定于应用程序的流量模式,我们证明了所提出的无线NoC体系结构的鲁棒性。

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