An adaptive router architecture for heterogeneous 3D Networks-on-Chip

Michael Opoku Agyeman, A. Ahmadinia
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引用次数: 14

Abstract

Three dimensional Network-on-Chip (3D NoC) is becoming increasingly popular to address the on-chip communication demands of modern multi-core systems. However, architectural framework of the 3D router uses more buffer resources than conventional 2D routers. Also, homogeneous 3D NoC topologies have more TSVs which have a costly and complex manufacturing process. To improve the performance and manufacturing cost in 3D NoCs we propose adaptive router architectures for heterogeneous and homogeneous 3D NoCs which combine both the area and performance benefits of static 2D and 3D router architectures. Experimental results show that with a negligible penalty of up to 0.4% in maximum operating frequency, we achieved performance improvement of up to 34% by replacing 2D static routers with adaptive routers in heterogeneous architectures.
一种异构3D片上网络的自适应路由器架构
为了满足现代多核系统的片上通信需求,三维片上网络(3D NoC)越来越受到人们的欢迎。然而,3D路由器的架构框架比传统的2D路由器使用更多的缓冲资源。此外,同构3D NoC拓扑具有更多的tsv,这具有昂贵和复杂的制造过程。为了提高3D noc的性能和制造成本,我们提出了异构和同构3D noc的自适应路由器架构,它结合了静态2D和3D路由器架构的面积和性能优势。实验结果表明,在最大工作频率损失高达0.4%的情况下,我们通过用异构架构中的自适应路由器取代2D静态路由器,实现了高达34%的性能改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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