Software Defined Network (SDN) and OpenFlow Protocol in 5G Network

Khaled Alghamdi, R. Braun
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引用次数: 10

Abstract

The world is moving at a high speed in the implementation and innovations of new systems and gadgets. 3G and 4G networks support currently wireless network communications. However, the networks are deemed to be slow and fail to receive signals or data transmission to various regions as a result of solving the problem. This paper will analyze the use of Software Defined Network (SDN) in a 5G (fifth generation) network that can be faster and reliable. Further, in Mobile IP, there exist triangulation problems between the sending and receiving nodes along with latency issues during handoff for the mobile nodes causing huge burden in the network. With Cloud Computing and ecosystem for Virtualization developed for the Core and Radio Networks SDN OpenFlow seems to be a seamless solution for determining signal flow between mobiles. There have been a lot of researches going on for deploying SDN OpenFlow with the 5G Cellular Network. The current paper performs benchmarks as a feasibility need for implementing SDN OpenFlow for 5G Cellular Network. The Handoff mechanism impacts the scalability required for a cellular network and simulation results can be further used to be deployed the 5G Network.
5G网络中的SDN (Software Defined Network)和OpenFlow协议
世界在新系统和新设备的实施和创新方面正在高速发展。3G和4G网络支持目前的无线网络通信。然而,解决了这个问题后,网络被认为速度很慢,无法接收到各个区域的信号或数据传输。本文将分析软件定义网络(SDN)在更快、更可靠的5G(第五代)网络中的使用。此外,在移动IP中,发送和接收节点之间存在三角测量问题,并且移动节点在切换过程中存在延迟问题,给网络带来了巨大的负担。随着核心和无线网络的云计算和虚拟化生态系统的发展,SDN OpenFlow似乎是确定手机之间信号流的无缝解决方案。在5G蜂窝网络中部署SDN OpenFlow已经进行了大量的研究。本文将基准测试作为5G蜂窝网络实现SDN OpenFlow的可行性需求。切换机制影响蜂窝网络所需的可扩展性,仿真结果可进一步用于5G网络的部署。
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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