MPLS Traffic Engineering in Satellite Networks

A. Durresi, M. Durresi, F. Xhafa
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引用次数: 3

Abstract

Broadband satellite constellation networks will be required to carry all types of IP traffic, real time interactive traffic as well as non-real time traffic, warranting the need for appropriate QoS for these different traffic flows. In this paper we investigate the need for MPLS traffic engineering in GEO/MEO/LEO satellite networks to address QoS issues. We compare the service received by TCP and UDP flows when they share a link and when they are routed on explicit MPLS traffic trunks. Since MPLS traffic trunks allow non-shortest path links also to be used, the total network throughput goes up with proper traffic engineering. If UDP and TCP flows are mixed in a trunk, TCP flows receive reduced service as the UDP flows increase their rates. Also, we found that with MPLS traffic engineering we can protect real time traffic and VoIP traffic from packet loss and excessive jitter by separating them from other congestion unresponsive flows
卫星网络中的MPLS流量工程
宽带卫星星座网络将需要承载所有类型的IP流量、实时交互流量以及非实时流量,从而保证需要为这些不同的流量提供适当的QoS。在本文中,我们研究了在GEO/MEO/LEO卫星网络中需要MPLS流量工程来解决QoS问题。我们比较了TCP和UDP流在共享链路和在显式MPLS流量中继上路由时接收到的服务。由于MPLS流量中继也允许使用非最短路径链路,因此通过适当的流量工程,可以提高网络的总吞吐量。如果UDP流和TCP流混合在一个trunk中,TCP流的业务量会减少,而UDP流的业务量会增加。此外,我们发现,通过MPLS流量工程,我们可以将实时流量和VoIP流量与其他拥塞无响应流分离开来,从而保护它们免受数据包丢失和过度抖动的影响
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