Software-Defined Networking (SDN) and 5G Network: The Role of Controller Placement for Scalable Control Plane

S. Syed-Yusof, Paulson Eberechukwu Numan, K. M. Yusof, J. Din, Muhammad Nadzir Bin Marsono, A. Onumanyi
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引用次数: 5

Abstract

The evolution of wireless networks from the first to fourth generation has made smart devices and technologies a significant part of our daily activities. The 5G network is a ground-breaking technology that proposes to transform the way individuals use the internet, via the creation of enabling atmosphere. 5G promises faster and superior quality with better security guarantee in comparison to preceding technologies. The software defined networking (SDN) on the other hand is an enabling technology needed to actualise the huge promises of 5G network. With extensive network in 5G, a centralised controller approach in SDN has limitations related to the performance and scalability. Several studies have advocated the use and placement of multiple controllers to improve scalability in SDN. Controller placement problem (CPP) becomes more of a challenge, especially when network nodes/links and controllers have some constraint metrics such as latency, network load and distance. This paper proposes a multicriteria clustering method that places the controllers based on a predefined constraint metrics between the controllers and the switches while minimising the overall latency. The results showed the proposed technique improved nodes distribution than existing solutions for a dense network anticipated in 5G scenario.
软件定义网络(SDN)和5G网络:控制器放置对可扩展控制平面的作用
从第一代到第四代无线网络的发展使智能设备和技术成为我们日常活动的重要组成部分。5G网络是一项突破性的技术,旨在通过创造有利的氛围来改变个人使用互联网的方式。与以往的技术相比,5G承诺更快、更优的质量和更好的安全保障。另一方面,软件定义网络(SDN)是实现5G网络巨大承诺所需的使能技术。随着5G网络的扩展,SDN中的集中控制器方法在性能和可扩展性方面存在局限性。一些研究提倡使用和放置多个控制器来提高SDN的可扩展性。控制器放置问题(CPP)变得更加具有挑战性,特别是当网络节点/链接和控制器具有一些约束指标(如延迟、网络负载和距离)时。本文提出了一种多标准聚类方法,该方法基于预定义的约束度量在控制器和交换机之间放置控制器,同时最小化总体延迟。结果表明,在5G场景下,与现有的密集网络解决方案相比,所提出的技术改善了节点分布。
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