A Scalability Metric for Control Planes in Software Defined Networks (SDNs)

Murat Karakus, A. Durresi
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引用次数: 22

Abstract

Software Defined Networking (SDN) architecture promises to mitigate limitations of traditional networking architectures in order to satisfy today's complex networking needs. However, as all new networking architectures, SDN also presents several inevitable technical challenges to be addressed by researchers. Control plane scalability is one of the crucial issues deserving more attention from both academia and industry in SDN as well. There are many existing solutions proposing a way to alleviate the control plane scalability in SDN. However, one prominent common ground they share is that they measure the control plane scalability performance in terms of typical network QoS parameters such as throughput and latency. Although these metrics may be a good performance indicators for quality of service measurement in mid-term and long-term, they may not reflect real scalability performance of control planes in SDN environments. However, a metric for scalability of control plane in SDN can provide network administrators some insights while they construct their SDN networks. In this paper, we firstly explore the roots of control plane scalability problem in SDN as well as proposed existing solutions. We then propose a metric in order to evaluate the control plane scalability in SDN. We give mathematical models of the proposed metric over different control plane designs. Further, we compare the performance of these control plane designs by extensive experiments.
软件定义网络(sdn)中控制平面的可扩展性度量
软件定义网络(SDN)体系结构有望减轻传统网络体系结构的局限性,以满足当今复杂的网络需求。然而,作为所有新的网络架构,SDN也提出了一些不可避免的技术挑战,需要研究人员解决。控制平面的可扩展性是SDN中值得学术界和工业界关注的关键问题之一。现有的许多解决方案都提出了一种缓解SDN控制平面可扩展性的方法。然而,它们的一个显著共同点是,它们根据典型的网络QoS参数(如吞吐量和延迟)来衡量控制平面的可伸缩性性能。虽然这些指标可能是衡量中期和长期服务质量的良好性能指标,但它们可能不能反映SDN环境下控制平面的真实可扩展性性能。然而,SDN中控制平面的可扩展性指标可以为网络管理员在构建SDN网络时提供一些见解。本文首先探讨了SDN中控制平面可扩展性问题的根源,并提出了现有的解决方案。然后,我们提出了一个度量来评估SDN中的控制平面可伸缩性。我们给出了不同控制平面设计下的度量的数学模型。此外,我们通过大量的实验比较了这些控制平面设计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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