基于CoV(t)的流量与排队建模

L. Noirie, G. Post
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引用次数: 3

摘要

基于分组交换技术(如以太网、IP、G/T-MPLS等)的新型电信网络的设计和部署需要准确的性能评估和网络尺寸。在这种背景下,网络工程师需要简单、高效、真实的流量模型。在本文中,我们研究了基于不同时间尺度t下观测到的数据速率的变异系数CoV(t)的流量建模。我们推导了一个简化的基于CoV(t)的流量模型,其新颖之处在于它只需要四个易于调整的参数,具有以下特征:平均速率mu,约束流量的链路容量C, Hurst参数H和与突发持续时间相关的过渡时间尺度t0。面对一些真实的交通痕迹,我们的模型被证明是准确的。我们通过将其应用于“理想开关”情况来说明如何在分析性能计算中使用它:由于我们的四参数简单模型,可以推导出节点性能估计或维度的公式。最后,我们提出了一种新的拟合程序,该程序将本文的四参数交通模型自动转换为马尔可夫流体ON-OFF源的叠加,该程序比现有的拟合程序更简单。这种叠加可用于为分组交换机模拟生成流量,将测试流量的设置简化为我们上面提到的四个参数的规范。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CoV(t)-based Traffic and Queuing Modeling
Accurate performance evaluation and network dimensioning are required for the design and the deployment of new telecommunication networks based on packet-switching technologies (e.g., Ethernet, IP, G/T-MPLS, etc.). In this context, network engineers need simple, efficient and realistic traffic models. In this paper we investigate traffic modeling based on the coefficient of variation CoV(t) of the data rate observed at different time scales t. We derive a simplified CoV(t)-based traffic model, the novelty being that it requires only four parameters easily tunable with the following characteristics: the mean-rate mu, the link capacity C constraining the traffic, the Hurst parameter H and the transition time scale t0 linked to the burst duration. Confronted to some real traffic traces, our model proves to be accurate. We illustrate how to use it in analytical performance calculation by applying it to the "ideal switch" case: thanks to our four-parameter simple model, one can derive formulas for node performance estimation or dimensioning. Finally, we propose a new fitting procedure that automatically translates the four-parameter traffic model of this paper into a superposition of Markov fluid ON-OFF sources, and that is simpler than already existing fitting procedures. This superposition can be used to generate traffic for packet switch simulations, simplifying the set-up of the test traffic to the specification of the four parameters we mentioned above.
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