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A Low Latency Scalable 3D NoC Using BFT Topology with Table Based Uniform Routing

机译:使用BFT拓扑结构的低延迟可扩展的3D NOC与基于表的统一路由

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Due to the limitations of traditional bus based systems, Network-on-Chip (NoC) has evolved as the most dominanttechnology in the paradigm of communication-centric revolution, where, besides the computation, inter-communication between the cores is an indispensable aspect of a SoC. Furthermore, the emergence of three dimensional integrated circuits (3D-ICs) has resulted in better performance, functionality, and packaging density compared to traditional planar ICs. The amalgamation of these two technologies, the 3D NoC architecture, can combine the benefits of these two new domains to offer an unprecedentedperformance gain. In this paper, we present a new 3D topological NoC design based on the butterfly fat tree (BFT) topology with an efficient table based uniform routing algorithm for 3D NoC. Extensive simulation experiments have been performed for BFT and compared to mesh, torus, butterfly and flattened butterfly topologies against four performance metrics viz. overall average latency, overall average acceptance rate, overall minimum acceptance rate, and average hop counts. There are significant latency improvements of 43-89 %, 83-88 %, 46-96 %, and 31-95 % over other topologies respectively. Average hop count is improved by 30 % and 13 % over mesh and torus. Also, there are improvements in average acceptance rate and minimum acceptance rate of 1-8 % and 5-14 % respectively for flattened butterfly and 6-9 % and 6-13 % over torus. Results evidently show that BFT is a very good choice for low network latency and faster communication.
机译:由于传统总线系统的局限性,片上网(NOC)在以通信为中心的革命范例中发展成为最多的优势技术,除了计算,核心之间的间间是一种不可或缺的方面一个soc。此外,与传统平面IC相比,三维集成电路(3D-IC)的出现导致更好的性能,功能和包装密度。对这两种技术的合并,3D NOC架构,可以将这两个新域的好处结合起来,以提供前所未有的能力增益。在本文中,我们基于蝴蝶脂肪树(BFT)拓扑的新型3D拓扑NOC设计,其基于3D NOC的高效表均匀路由算法。对BFT进行了广泛的仿真实验,并与网格,圆环,蝴蝶和扁平蝴蝶拓扑相比进行了相对于四种性能度量QIZ。总体平均延迟,总体平均接受率,总体最低验收率和平均跳数。在其他拓扑上分别存在显着提高43-89%,83-88%,46-96%和31-95%。平均跳数在网眼和圆环上提高了30%和13%。此外,对于平坦的蝴蝶的平均接受率和最低验收率的平均接受率和5-14%的最低验收率分别为6-9%和6-13%。结果显然表明BFT是低网络延迟和更快的通信的非常好的选择。

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