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Two priority buffered multistage interconnection networks

机译:两个优先级缓冲的多级互连网络

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摘要

This paper presents a novel architecture of internally two priority buffered Multistage Interconnection Network (MIN). First, we compare by simulation the new architecture against a single priority MIN and demonstrate up to N times higher throughput for the high priority traffic in a hot spot situation, when N is the number of inputs. In addition, under uniform traffic assumption we show an increase in the low priority throughput, without any change in the high priority throughput. Moreover, while in the single priority system the high priority delay and its standard deviation are increased when low priority traffic is present, it is kept constant in the dual priority system. Finally, we introduce a new approach of long Markovian memory performance model to better capture the packets dependency in a single priority MIN under uniform traffic and extend this model for a dual priority MIN. Model results are shown to be very accurate.
机译:本文提出了一种内部两个优先级缓冲的多级互连网络(MIN)的新颖架构。首先,我们通过仿真将新架构与单优先级MIN进行比较,并证明当N是输入数量时,热点情况下高优先级流量的吞吐量要高出N倍。另外,在统一流量假设下,我们显示出低优先级吞吐量增加了,而高优先级吞吐量没有任何变化。此外,在单优先级系统中,当存在低优先级流量时,高优先级延迟及其标准偏差会增加,而在双优先级系统中则保持不变。最后,我们引入了长马尔可夫内存性能模型的新方法,以更好地捕获统一流量下单优先级MIN中的数据包依赖性,并将该模型扩展为双优先级MIN。模型结果显示非常准确。

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