Effect of Traditional and Software-Defined Networking on Performance of Computer Network

Isiaka Babatunde Sadiku, W. Ajayi, Wilson Sakpere, Temilola John-Dewole, R. A. Badru
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Abstract

Purpose: Computer networks and the Internet are changing the way we communicate, learn, work, and even play. Conventional computer networks are not smart enough towards processes that contribute to improving online control transaction of services and demand for unlimited communication services. Hence, computer networking has to go smart.Methods: This paper explores the effect of different computer networking types - traditional computer networking (D0) and Software-Defined Networking (D1). The paper combined traditional computer networking (D0) with Software-Defined Network (D2) running applications (A1, A2, A3, A4 and A5) with the host sending 5 packets (P1, P2, P3, P4 and P5) across the networks emulated using Mininet network emulation to observe various performance parameters on the network.Result: It was observed that Application A1 recorded the highest bandwidth, throughput and latency. The least bandwidth, throughput and latency were observed in A4. The result showed that below 80% of the IPv4 packet size (65,507 bytes) of running application, the higher the bandwidth the higher the throughput. Also, the lower the latency the more statistically similar the jitter experienced. Packet P1 has the highest bandwidth and throughput usage with high latency. The results indicate that the higher the bandwidth and throughput, the higher the latency observed in the packet sent across the network. Traditional computer networking (D1) recorded the highest bandwidth and throughput with the highest jitter. The correlation result showed that the jitter decreases with increasing bandwidth and throughput.Novelty: This study provides information on traditional computer networking and Software-Defined Networking. The result validates studies that observed significant F-value and stability in the SDN application-awareness experiment.  
传统网络和软件定义网络对计算机网络性能的影响
目的:计算机网络和互联网正在改变我们交流、学习、工作甚至玩耍的方式。传统的计算机网络对于有助于改善服务的在线控制交易和对无限通信服务的需求的过程不够智能。因此,计算机网络必须智能化。方法:本文探讨了不同的计算机网络类型——传统计算机网络(D0)和软件定义网络(D1)的影响。本文将传统的计算机网络(D0)与运行应用程序(A1、A2、A3、A4和A5)的软件定义网络(D2)相结合,主机通过使用Mininet网络仿真模拟的网络发送5个数据包(P1、P2、P3、P4和P5),以观察网络上的各种性能参数。结果:观察到应用程序A1记录了最高的带宽、吞吐量和延迟。在A4中观察到最小的带宽、吞吐量和延迟。结果表明,在运行应用程序的IPv4数据包大小(65507字节)的80%以下,带宽越高,吞吐量越高。此外,延迟越低,所经历的抖动在统计上就越相似。分组P1具有最高的带宽和吞吐量使用,并且具有高延迟。结果表明,带宽和吞吐量越高,在通过网络发送的数据包中观察到的延迟就越高。传统的计算机网络(D1)以最高的抖动记录了最高的带宽和吞吐量。相关结果表明,抖动随着带宽和吞吐量的增加而减小。新颖性:这项研究提供了关于传统计算机网络和软件定义网络的信息。该结果验证了在SDN应用程序感知实验中观察到显著F值和稳定性的研究。
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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13
审稿时长
24 weeks
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