Routing and Performance Analysis of Double-Buffered Omega Networks Supporting Multi-class Priority Traffic

D. C. Vasiliadis, G. Rizos, C. Vassilakis, E. Glavas
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引用次数: 11

Abstract

In this paper the modeling of Omega Networks supporting multi-class routing traffic is presented and their performance is analyzed. We compare the performance of multi-class priority mechanism against the single priority one, by gathering metrics for the two most important network performance factors, namely packet throughput and delay under uniform traffic conditions and various offered loads, using simulations. Moreover, two different test-bed setups were used in order to investigate and analyze the performance of all priority-class traffic, under different quality of service (QoS) configurations. In the considered environment, switching elements (SEs) that natively support multi-class priority routing traffic are used for constructing the MIN, while we also consider double-buffered SEs, two configuration parameters that have not been addressed insofar. The rationale behind introducing a multiple-priority scheme is to provide different QoS guarantees to traffic from different applications, which is a highly desired feature for many IP network operators, and particularly for enterprise networks.
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支持多优先级流量的双缓冲Omega网络的路由和性能分析
本文提出了支持多类路由流量的Omega网络的建模方法,并对其性能进行了分析。我们通过收集两个最重要的网络性能因素的指标,即在统一的流量条件和各种提供的负载下的数据包吞吐量和延迟,使用模拟来比较多优先级机制和单优先级机制的性能。此外,为了调查和分析所有优先级流量在不同服务质量(QoS)配置下的性能,使用了两种不同的测试平台设置。在考虑的环境中,本机支持多类优先级路由流量的交换元素(se)用于构建MIN,同时我们还考虑双缓冲se,这两个配置参数到目前为止还没有解决。引入多优先级方案的基本原理是为来自不同应用程序的流量提供不同的QoS保证,这是许多IP网络运营商(尤其是企业网络)非常期望的特性。
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