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An Effective on-Chip Network Topology for Network on Chip (Noc) Trade-Offs

机译:一种有效的片上网络拓扑,可以权衡片上网络(Noc)

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Background/objectives: The major contribution in very large scale integrated circuits is given by System on Chip (SoC) technology. Many fuzzy logics are been implemented on SoC’s and are effectively supported by them. In time the Networks came into existence and interconnection of networks became very necessary so Network on Chips (NoC) was implemented and many topologies were also suggested. The main aim of this paper is to find an effective on-chip topology for network on chips. Methods/Statistical Analysis: Topologies related to this network on chips gives different routing algorithms which defines the direction of the route. Different algorithms were proposed for different topologies defining the direction, traffic rate at which the packet is entering, latency, and throughput. These were considered as the main trade off’s for Network on Chip. Findings: in this paper discussion on 4 topologies was done by taking few main properties into account and implementation of the topologies were done in software. It was found that latency and throughput plays a major role in the topology and along with these 2 the packet rate and flit rate also play a key role. The values of all trade-offs for every topology were taken and graphs were plotted showing the variation between the topologies. The efficiency of each topology can be observed in respective graph. Application/Improvements: Network on chips is used in routers and these can be further improved in to wireless connections.
机译:背景/目标:超大规模集成电路的主要贡献在于片上系统(SoC)技术。许多模糊逻辑已在SoC上实现,并得到了它们的有效支持。随着网络的出现,网络的互连变得非常必要,因此实施了片上网络(NoC)并提出了许多拓扑。本文的主要目的是找到一种有效的片上网络拓扑。方法/统计分析:与此芯片上的网络相关的拓扑提供了不同的路由算法,这些算法定义了路由的方向。对于不同的拓扑,提出了不同的算法,这些拓扑定义了方向,数据包进入的流量速率,延迟和吞吐量。这些被认为是片上网络的主要折衷方案。发现:在本文中,对4种拓扑的讨论是通过考虑几个主要属性来完成的,并且拓扑的实现是在软件中完成的。发现延迟和吞吐量在拓扑结构中起主要作用,并且与这2一起,数据包速率和迁移速率也起关键作用。获取每种拓扑的所有折衷值,并绘制图表以显示拓扑之间的变化。每种拓扑的效率都可以在相应的图中观察到。应用/改进:路由器使用了片上网络,并且可以进一步改善无线连接。

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