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A Traffic-aware Adaptive Routing Algorithm on a Highly Reconfigurable Network-on-Chip Architecture

机译:基于高度可重配置的片上网络体系结构的流量感知自适应路由算法

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In this paper, we propose a flexible NoC architecture and a dynamic distributed routing algorithm which can enhance the NoC communication performance with minimal energy overhead. In particular, our proposed NoC architecture exploits the following two features: ⅰ) self-reconfigurable bidirectional channels to increase the effective bandwidth and ⅱ) express virtual paths, as well as localized hub routers, to bypass some intermediate nodes at run time in the network. A deadlock-free and traffic-aware dynamic routing algorithm is further developed for the proposed architecture, which can take advantage of the increased flexibility in the proposed architecture. Both the channels self-reconfiguration and routing decisions are made in a distributed fashion, based on a function of the localized traffic conditions, in order to maximize the performance and minimize the energy costs at the macroscopic level. Our simulation results show that the proposed approach can reduce the network latency by 30% -80% in most cases compared to a conventional unidirectional mesh topology, while incurring less than 15% power overhead.
机译:在本文中,我们提出了一种灵活的NoC架构和动态分布式路由算法,该算法可以以最小的能量开销来增强NoC通信性能。特别是,我们提出的NoC架构利用以下两个功能:ⅰ)可自我重新配置的双向通道以增加有效带宽,以及ⅱ)表达虚拟路径以及本地集线器路由器在网络运行时绕过某些中间节点。针对所提出的架构,进一步开发了无死锁和流量感知的动态路由算法,该算法可以利用所提出的架构中增加的灵活性。基于局部业务状况的函数,以分布式方式做出信道的自重配置和路由决策,以便在宏观级别上最大化性能并最小化能源成本。我们的仿真结果表明,与传统的单向网格拓扑相比,该方法在大多数情况下可以将网络延迟减少30%-80%,而功耗却不到15%。

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