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Performance evaluation of OpenFlow-based software-defined networks based on queueing model

机译:基于排队模型的基于OpenFlow的软件定义网络的性能评估

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OpenFlow is one of the most famous protocols for controller-to-switch communications in software-defined networking (SDN), commonly seen as a promising way towards future Internet. Understanding the performance and limitation of OpenFlow-based SDN is a prerequisite of its deployments. To achieve this aim, this paper proposes a novel analytical performance model of OpenFlow networks based on queueing theory. After depicting a typical network scenario of OpenFlow deployments, we model the packet forwarding of its OpenFlow switches and the packet-in message processing of its SDN controller respectively as the queueing systems M-x/M/1 and M/G/1. Subsequently, we build a queueing model of OpenFlow networks in terms of packet forwarding performance, and solve its closed-form expression of average packet sojourn time and the corresponding probability density function. Finally, the numerical analysis is carried out to evaluate our proposed performance model with different parameter values. Furthermore, our controller model is contrasted with the classical one by utilizing the popular benchmark Cbench. Experimental results indicate that our controller model provides a more accurate approximation of SON controller performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:OpenFlow是软件定义网络(SDN)中控制器到交换机通信的最著名协议之一,通常被视为通向未来Internet的一种有前途的方式。了解基于OpenFlow的SDN的性能和局限性是其部署的先决条件。为了达到这个目的,本文提出了一种基于排队论的新型OpenFlow网络分析性能模型。在描述了OpenFlow部署的典型网络场景之后,我们分别将其OpenFlow交换机的数据包转发和SDN控制器的数据包入消息处理建模为排队系统M-x / M / 1和M / G / 1。随后,根据报文的转发性能,建立了一个OpenFlow网络的排队模型,并求解了其平均报文停留时间的封闭形式和相应的概率密度函数。最后,进行数值分析以评估我们提出的具有不同参数值的性能模型。此外,通过使用流行的基准Cbench,我们的控制器模型与经典模型进行了对比。实验结果表明,我们的控制器模型提供了SON控制器性能的更准确近似值。 (C)2016 Elsevier B.V.保留所有权利。

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