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首页> 外文期刊>Journal of interconnection networks >Stable Matching based Virtual Channels Allocation Scheme in Network-on-Chip
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Stable Matching based Virtual Channels Allocation Scheme in Network-on-Chip

机译:基于网络的芯片稳定的虚拟信道分配方案

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摘要

While designing router micro-architecture of an On-Chip network, a good allocation of virtual channels (VCs) governs an effective resources utilization which essentially results in an optimized number of packets received at destination(s). Generally, the VC allocation schemes deal with the one-way approach of VC allocation to the contending flits. How-ever,this approach produces non-optimal matching of flits to the available VCs on next routers, and therefore leads to the under-utilization of these VCs. This paper proposes a 2-Way VC Allocation scheme to map input VCs (requestors) to output VCs (resources). The proposed scheme is compared with the conventional VC allocation scheme under two different mesh configurations with a 100% channel load. Simulations performed under two different routing schemes in diverse traffic scenarios demonstrate an increase in the number of packets received at destinations by up to 76%. Also, the network's latency exhibits trade-off with total power consumption while reducing hotspots.
机译:在设计片上网络的路由器微架构时,良好的虚拟通道(VCS)的分配管理有效资源利用率,其基本上导致在目的地接收的优化数量的数据包。通常,VC分配方案处理VC分配给竞争杂种的单向方法。然而,这种方法产生了对下一个路由器上的可用VC的杂页的非最佳匹配,因此导致这些VC的利用率。本文提出了一个双向VC分配方案,用于将输入VCS(请求者)映射到输出VCS(资源)。将所提出的方案与传统的VC分配方案与100%通道负载的两个不同网格配置进行比较。在各种交通方案中的两个不同路由方案下执行的模拟表明,目的地收到的数据包数量高达76%。此外,网络的延迟在减少热点时呈现出总功耗的权衡。

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