Tel-MPLS:通过 MPLS 网络最大限度提高 IP 电话利用率的新方法

Mosleh M. Abualhaj, Mahran M. Al-Zyoud, A. Abu-Shareha, Mohammad O. Hiari, Qusai Y. Shambour
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引用次数: 0

摘要

目前,多协议标签交换(MPLS)标准非常普遍。通过利用MPLS技术提供的特性,包括IP电话在内的一系列业务提高了其整体性能。但是,由于报文头的大小,IP电话业务占用了MPLS网络可用带宽的很大一部分。例如,在MPLS网络上的IP电话中,数据包报头可能占损失时间和带宽的80%。致力于IP电话的设计师正在努力解决这个问题。这项研究通过提出一种名为Tel-MPLS的新方法对当前的努力做出了贡献,该方法涉及基于MPLS的IP电话。TelMPLS方法使用IP电话分组报头中的多余字段来保留分组数据,因此降低或归零IP电话分组的有效载荷。Tel-MPLS是一种显著降低IP电话MPLS网络带宽的方法。根据研究结果,当使用G.729编解码器时,Tel-MPLS方法能够减少12%的带宽损失。
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Tel-MPLS: a new method for maximizing the utilization of IP telephony over MPLS networks
Currently, the multiprotocol label switching (MPLS) standard is extremely prevalent. By exploiting the features provided by MPLS technology, a range of services, including IP telephony, have enhanced their overall performance. However, due to the size of the packet header, the IP telephony service consumes a significant portion of the MPLS network's available bandwidth. For instance, in IP telephony over MPLS networks, the packet header might account for as much as 80% of lost time and bandwidth. Designers working on IP telephony are making substantial efforts to address this issue. This study contributes to current efforts by proposing a novel approach called Tel-MPLS, which involves IP telephony over MPLS. TelMPLS approach uses the superfluous fields in the IP telephony packet's header to retain the packet data, therefore lowering or zeroing the IP telephony packet's payload. Tel-MPLS is an approach that significantly reduces the bandwidth of IP telephony MPLS networks. According to the findings, the Tel-MPLS approach is capable of reducing the amount of bandwidth that is lost by 12% when using the G.729 codec.
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来源期刊
Bulletin of Electrical Engineering and Informatics
Bulletin of Electrical Engineering and Informatics Computer Science-Computer Science (miscellaneous)
CiteScore
3.60
自引率
0.00%
发文量
0
期刊介绍: Bulletin of Electrical Engineering and Informatics publishes original papers in the field of electrical, computer and informatics engineering which covers, but not limited to, the following scope: Computer Science, Computer Engineering and Informatics[...] Electronics[...] Electrical and Power Engineering[...] Telecommunication and Information Technology[...]Instrumentation and Control Engineering[...]
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