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Improving Performance of Finite-buffered Blocking Delta Networks with 2-class Priority Routing through Asymmetric-sized Buffer Queues

机译:通过非对称缓冲区队列提高有限缓冲阻塞三角洲网络的有限缓冲阻塞三角洲网络的性能

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In this paper the performance of asymmetric-sized finite-buffered Delta Networks with 2-class routing traffic is presented and analyzed in the uniform traffic conditions under various loads using simulations. We compare the performance of 2-class priority mechanism against the single priority one, by gathering metrics for the two most important network performance factors, namely packet throughput and delay. We also introduce and calculate a universal performance factor, which includes the importance aspect of each of the above main performance factors. We found that the use of asymmetric-sized buffered systems leads to better exploitation of network capacity, while the increments in delays can be tolerated The goal of this paper is to help network designers in performance prediction before actual network implementation and in understanding the impact of each parameter factor.
机译:本文在使用模拟的各种负载下,在统一的交通条件下呈现和分析了非对称的有限缓冲增量网络的性能。我们通过收集两个最重要的网络性能因素,即数据包吞吐量和延迟,比较双级优先机制对单一优先权机制的性能。我们还介绍并计算了一个通用的性能因素,包括上述每个主要性能因素的重要性方面。我们发现,使用不对称的缓冲系统导致了更好地利用网络容量,而延迟的增量可以容忍本文的目标是帮助网络设计师在实际网络实现之前的性能预测中的性能预测和理解的影响每个参数因子。

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