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An analytical model for the performance evaluation of multistage interconnection networks with two class priorities

机译:具有两类优先级的多级互连网络性能评估的分析模型

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The aim of this paper is to develop an analytical method for performance evaluation of double prioritized Multistage Interconnected Networks (MINs) with single or multilayers and backpressure operation which provide service differentiation and QoS guarantee to an end application running over next generation Internet or Grid systems. Specifically, a new architecture of switching elements is used for the construction of MINs. This switch element uses two parallel queues in order to serve dual priority traffic. Besides this, uniform traffic conditions are presupposed and the bulk of packet arrivals in each cycle to the network inputs follow a Bernoulli distribution. A new analytical model for evaluating single buffered MIN's with 2×2 special switching elements supporting internally two classes' priority traffic is presented. Equations for the steady state are derived. These equations are then used in finding the most important multistage network performance metrics, such as throughput, and packet latency. The results are also validated using simulation and compared with previous related work in marginal cases. This proposed analytical model is accurate for various network sizes and various values of offered traffic to the multistage network inputs.
机译:本文的目的是开发一种分析方法,用于评估具有单个或多个层的双优先级多级互连网络(MIN)和背压操作的性能,从而为运行在下一代Internet或Grid系统上的最终应用程序提供服务差异化和QoS保证。具体地,开关元件的新架构被用于MIN的构造。此交换元素使用两个并行队列以便提供双优先级流量。除此之外,还假设统一的流量条件,并且每个周期到达网络输入的大部分数据包都遵循伯努利分布。提出了一种新的分析模型,用于评估具有2×2特殊开关元件的单个缓冲MIN,内部支持两个类别的优先级流量。推导出稳态方程。然后,将这些方程式用于查找最重要的多级网络性能指标,例如吞吐量和数据包延迟。还使用模拟对结果进行了验证,并将其与边际情况下的先前相关工作进行了比较。对于各种网络规模和提供给多级网络输入的流量的各种值,该建议的分析模型都是准确的。

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