VoIP性能评价分析与仿真

Winfred Adjardjah, Franklin Kummasah, Dawood Mohammed Abdallah, J. Addor
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摘要

科技的使用在很多方面影响着交流。互联网语音协议(VoIP)的出现使世界成为一个地球村,人们可以与宇宙的任何部分联系。但是,如何使通信和数据传输更快是一个挑战,网络中的通信量、带宽和延迟,必须在发送方和接收方之间传输。通过使用技术可以改善整体客户体验,这也使收集客户信息变得更简单。数据包通过互联网协议(IP)寻址和路由。本研究旨在部署抖动、吞吐量、网络流量延迟和带宽(JiTTraB)作为衡量互联网语音协议(VoIP)的性能指标,以衡量网络的服务质量(QoS)。这种方法优先考虑通过路由器的网络流量,并为大多数用户提供可接受的服务,以解决VoIP问题。与现有的大学校园网(UCN)相比,JiTTraB具有更高的吞吐量,在给定时间内传输更多数据,最小延迟约为0.001秒。然而,UCN在传输前对数据进行高延迟率的排队。由于网络过载超过其吞吐量边际和增长能力,数据似乎在UCN上严重崩溃。因此,本文提出的基于JiTTraB的网络设计在传输速率、吞吐量、带宽、延迟和抖动等方面都优于UCN。此外,JiTTraB通信网络通过在近距离会话中比在远距离会话中表现更好来增强QoS。凭借30%的扩展储备,JiTTraB可以安全地处理多达350个会话,同时保持VoIP QoS标准,而不会降低其他网络服务或应用程序的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of VoIP Analysis and Simulation
The use of technology has impacted on communication in so many ways. The advent of voice over internet protocols (VoIP) has made the world a global village where one can reach out to any part of the universe. But a challenge exists as to how to make communication and data transmission faster, the volume of traffic, bandwidth and latency in networks, that has to be transmitted between the sender and the receiver. The overall customer experience can be improved by the use of technology, which also makes it simpler to collect client information. Data packets are addressed and routed by the Internet Protocol (IP). This research aimed at deploying jitter, throughput, network traffic delay and bandwidth (JiTTraB) as a performance metrics to measure voice over internet protocols (VoIP) to measure the Quality of Service (QoS) of networks. This method prioritizes network traffic going through a router and providing acceptable service to most users in a quest to address VoIP concerns. In comparison to an existing university campus network (UCN), JiTTraB has a higher throughput, more data transmission at a given time with a minimal delay of about 0.001 seconds. However, UCN queues data with a high rate of delay before transmission. Data seem to crash considerably on the UCN due to network overload above its throughput margin and growth capacity. Thus, the proposed network design based on JiTTraB outperforms UCN in terms of transmission rate, throughput, bandwidth, delay and jitter. In addition, the JiTTraB communication network enhances QoS by performing better in close-quarters conversations than in far-quarters conversations. With an expansion reserve of 30%, the JiTTraB can handle up to 350 conversations securely while maintaining VoIP QoS standards without degrading the functionality of other network services or applications.
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