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Using Dijkstra to Compute Hop-by-Hop QoS Paths

机译:使用dijkstra计算逐跳QoS路径

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The Internet is based on a hop-by-hop routing model where forwarding decisions are based on a packet's destination. With the evolution of the Internet to support real-time applications such as video and audio distribution, the Internet's routing architecture must be enhanced to support metrics that ensure the quality-of- service requirements of these applications. Sobrinho has shown that some of these metrics, when used with a Dijkstra routing computation, may result in paths that are not least-cost or loop-free, and don't support hop-by-hop forwarding in the general case. To address this problem Sobrinho has presented a technique for computing paths using Dijkstra that, while not directly supporting hop-by-hop forwarding, do ensure that packets forwarded based on these paths will follow loop-free, least-cost paths. However, this results in routers forwarding packets along different paths from those they computed. In this paper we build on Sobrinho's work by presenting a sufficient condition for computing hop-by-hop paths. This condition, while not as general as Sobrinho's solution, has more relaxed requirements of the path algebra. Given this greater latitude we are then able to present a new technique for computing paths that are loop-free, least-cost, and support hop-by-hop forwarding when used with a Dijkstra route computation, thus restoring the visibility of routers into the paths they forward packets over.
机译:互联网基于逐跳路由模型,其中转发决策基于数据包的目的地。随着互联网的演变来支持视频和音频分布等实时应用,必须增强Internet的路由架构,以支持确保这些应用程序的服务质量要求的度量。 Sobrinho表明,当与Dijkstra路由计算一起使用时,这些指标中的一些可能导致不排名成本或无循环的路径,并且不支持在常规情况下支持逐跳转发。为了解决这个问题,Sobrinho介绍了一种使用Dijkstra计算路径的技术,同时不直接支持跳跃转发,确保基于这些路径转发的数据包遵循无环,最小成本路径。但是,这导致路由器沿着他们计算的不同路径转发数据包。在本文中,我们通过呈现足够的条件来计算逐跳的路径来构建Sobrinho的工作。这种情况,虽然不是Sobrinho的解决方案,但对路径代数有更轻松的要求。鉴于这种更大的纬度,我们能够为与Dijkstra路由计算一起使用时,我们能够为无循环,最小成本和支持跳跃转发的计算路径提供新技术,从而将路由器的可见性恢复到他们向前转发数据包的路径。

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