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Improvement of cluster-based Mesh FPGA architecture using novel hierarchical interconnect topology and long routing wires

机译:使用新颖的分层互连拓扑和长布线改进基于集群的Mesh FPGA架构

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This paper presents an improved interconnect network for Mesh of Clusters (MoC) Field-Programmable Gate Array (FPGA) architecture. Proposed architecture has a depopulated intra-cluster interconnect with flexible Rent's parameter. It presents new multi-levels Switch Box (SB) interconnect which unifies a downward and an upward unidirectional networks based on the Butterfly-Fat-Tree (BFT) topology. To improve the routability of proposed MoC-based FPGA, long routing segments are introduced as a function of channel width with adjustable span. Compared to basic Versatile Place and Route (VPR) Mesh architecture, a saving of 32% of area and 30% of power was achieved with proposed MoC-based architecture. Based on analytical and experimental methods, we identified and explored architecture parameters that control the interconnect flexibility of the proposed MoC-based FPGA such as Rent's parameter, cluster size, Look-Up-Table (LUT) size, long wires span and percentage. Experimental results show that architecture with LUT size 4 and Cluster arity 8 is the best trade-off between power consumption and density. It can also be noted that in general long wires span equal to 4 and percentage between 20% and 30% produce most efficient results in terms of density and power. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种改进的互连网络,用于集群网格(MoC)现场可编程门阵列(FPGA)体系结构。拟议的体系结构具有人口稀少的集群内部互连,且具有灵活的Rent参数。它提出了新的多层交换盒(SB)互连,该互连基于蝴蝶-胖树(BFT)拓扑统一了向下和向上的单向网络。为了提高所提出的基于MoC的FPGA的可布线性,引入了较长的路由段,作为具有可调跨度的通道宽度的函数。与基本的多功能布局布线(VPR)网状结构相比,采用基于MoC的架构可节省32%的面积和30%的功耗。基于分析和实验方法,我们确定并探索了可控制所提出的基于MoC的FPGA互连灵活性的架构参数,例如Rent的参数,簇大小,查找表(LUT)大小,长导线跨度和百分比。实验结果表明,具有LUT大小4和Cluster arity 8的体系结构是功耗和密度之间的最佳折衷方案。还要注意的是,通常,长导线的跨度等于4,并且在20%和30%之间的百分比在密度和功率方面产生最有效的结果。 (C)2015 Elsevier B.V.保留所有权利。

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