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A low latency and low power indirect topology for on-chip communication

机译:片上通信的低延迟和低功率间接拓扑

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This paper presents the Hybrid Scalable-Minimized-Butterfly-Fat-Tree (H-SMBFT) topology for on-chip communication. Main aspects of this work are the description of the architectural design and the characteristics as well as a comparative analysis against two established indirect topologies namely Butterfly-Fat-Tree (BFT) and Scalable-Minimized-Butterfly-Fat-Tree (SMBFT). Simulation results demonstrate that the proposed topology outperforms its predecessors in terms of performance, area and power dissipation. Specifically, it improves the link interconnectivity between routing levels, such that the number of required links isreduced. This results into reduced router complexity and shortened routing paths between any pair of communicating nodes in the network. Moreover, simulation results under synthetic as well as real-world embedded applications workloads reveal that H-SMBFT can reduce the average latency by up-to35.63% and 17.36% compared to BFT and SMBFT, respectively. In addition, the power dissipation of the network can be reduced by up-to33.82% and 19.45%, while energy consumption can be improved byup-to32.91% and 16.83% compared to BFT and SMBFT, respectively.
机译:本文介绍了用于片上通信的混合可伸缩最小化蝴蝶 - 脂肪树(H-SMBFT)拓扑。这项工作的主要方面是建筑设计的描述和特征以及针对两种建立的间接拓扑的比较分析,即蝴蝶 - 脂肪树(BFT)和可伸缩最小化蝴蝶 - 脂肪树(SMBFT)。仿真结果表明,拟议的拓扑在性能,区域和功耗方面优于其前辈。具体地,它改善了路由级别之间的链路互连,使得所需链路的数量。这导致路由器复杂性降低,并且在网络中的任何对传送节点之间缩短了路由路径。此外,与BFT和SMBFT分别相比,综合性和现实世界嵌入式应用程序工作负载下的仿真结果揭示了H-SMBFT可以将平均延迟降低至35.63%和17.36%。此外,网络的功耗可降低至33.82%和19.45%,而能量消耗可以分别与BFT和SMBFT相比提高-1至32.91%和16.83%。

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