Performance Evaluation of OSPF and RIP on IPV4 & IPV6 Technology Using G.711 CODEC

Mabubur Syed, Isaac Yerima Ambore
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引用次数: 2

Abstract

Migration from IPv4 to IPv6 is still visibly slow, mainly because of the inherent cost involved in the implementation, hardware and software acquisition. However, there are many values IPv6 can bring to the IP enabled environment as compared to IPv4, particularly for Voice Over Internet Protocol (VoIP) solutions. Many companies are drifting away from circuit based switching such as PSTN to packet based switching (VoIP) for collaboration. There are several factors determining the effective utilization and quality of VoIP solutions. These include the choice of codec, echo control, packet loss, delay, delay variation (jitter), and the network topology. The network is basically the environment in which VoIP is deployed. State of art network design for VoIP technologies requires impeccable Interior Gateway routing protocols that will reduce the convergence time of the network, in the event of a link failure. Choice of CODEC is also a main factor. Since most research work in this area did not consider a particular CODEC as a factor in determining performance, this paper will compare the behaviour of RIP and OSPF in IPv4 and IPv6 using G.711 CODEC with riverbed modeller17.5.
基于G.711编解码器的OSPF和RIP在IPV4和IPV6技术上的性能评价
从IPv4到IPv6的迁移仍然明显缓慢,主要是因为实施、硬件和软件获取所涉及的固有成本。然而,与IPv4相比,IPv6可以为支持IP的环境带来许多价值,特别是对于互联网协议语音(VoIP)解决方案。许多公司正在从基于电路的交换(如PSTN)转向基于分组的交换(VoIP)进行协作。有几个因素决定了VoIP解决方案的有效利用和质量。这些包括编解码器的选择、回波控制、丢包、延迟、延迟变化(抖动)和网络拓扑。网络基本上就是VoIP的部署环境。VoIP技术的最先进的网络设计需要完美的内部网关路由协议,这将减少网络的收敛时间,在链路故障的情况下。CODEC的选择也是一个主要因素。由于该领域的大多数研究工作没有将特定的CODEC作为决定性能的因素,因此本文将使用G.711 CODEC与河床模型17.5比较IPv4和IPv6中RIP和OSPF的行为。
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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