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OSPF-based hybrid approach for scalable dissemination of QoS parameters

机译:基于OSPF的混合方法可扩展QoS参数的分发

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Current link-state routing protocols (e.g., OSPF) use flooding to disseminate link-state information throughout the network. Despite its simplicity and reliability, flooding incurs unnecessary communication and processing overheads in control plane since nodes may receive multiple copies of the same advertisement. These overheads become significant in protocols that support quality-of-service (QoS) routing, where links are associated with dynamic metrics (e.g., available bandwidth) that need to be advertised frequently. The overheads can be significantly reduced using tree-based broadcasting approaches. Although a number of such approaches have been proposed in the literature, they have not been used in real networks because of their complexity and/or unreliability. In this paper, we propose a hybrid link-state dissemination approach that combines the best features of flooding and tree-based broadcasting. Our approach is particularly suited for the dissemination of "dynamic" link metrics (e.g., available bandwidth), which are often used in QoS-based path selection and traffic engineering. In our approach, topological changes and first-time LSAs (link-state advertisements) are flooded, whereas refresh LSAs (the ones that provide updated information on the dynamic metrics) are sent using tree-based broadcasting. The broadcast trees in our approach are constructed dynamically during the flooding of the first-time LSA, without the need for the complex algorithms of previously proposed tree-based approaches. Two versions of the proposed scheme are provided; one being more suitable for quasi-static topologies (i.e., link failure rate is low) while the other is aimed at highly dynamic networks. We show how both versions can be integrated into the OSPF protocol. We further provide a working implementation of both versions, obtained after modifying Moy's OSPF source code [OSPF: Complete Implementation (with CD-ROM), Addison Wesley, Reading, MA, 2000]. We contrast the communications and processing overheads of our scheme with those of flooding and pure tree-based broadcasting, using both analysis and simulations. Our results indicate that the hybrid approach has a significantly lower overhead than flooding; yet it enjoys the simplicity, reliability, and fast convergence of flooding.
机译:当前的链路状态路由协议(例如OSPF)使用泛洪在整个网络中分发链路状态信息。尽管其简单性和可靠性,但泛洪会在控制平面中引起不必要的通信和处理开销,因为节点可能会收到同一广告的多个副本。这些开销在支持服务质量(QoS)路由的协议中变得尤为重要,在这些协议中,链接与动态度量(例如,可用带宽)相关联,而动态度量(例如,可用带宽)需要经常发布。使用基于树的广播方法可以显着减少开销。尽管在文献中已经提出了许多这样的方法,但是由于它们的复杂性和/或不可靠性,它们还没有在实际网络中使用。在本文中,我们提出了一种混合的链接状态传播方法,该方法结合了泛洪和基于树的广播的最佳功能。我们的方法特别适合于传播“动态”链路度量(例如,可用带宽),这些常用于基于QoS的路径选择和流量工程中。在我们的方法中,拓扑变化和首次LSA(链接状态广告)被泛洪,而刷新LSA(提供有关动态度量的更新信息的LSA)是使用基于树的广播发送的。我们的方法中的广播树是在首次LSA泛洪期间动态构建的,不需要先前提出的基于树的方法的复杂算法。提供了两种方案的提议;一种更适合于准静态拓扑(即链路故障率低),而另一种针对高度动态的网络。我们展示了如何将这两个版本集成到OSPF协议中。我们还提供了这两个版本的有效实现,这是在修改Moy的OSPF源代码后获得的[OSPF:完整实现(带有CD-ROM),Addison Wesley,雷丁,MA,2000年)。通过分析和仿真,我们将我们的方案的通信和处理开销与泛洪和纯树广播的开销进行了对比。我们的结果表明,混合方法比泛洪的开销要低得多。但是它具有洪水泛滥的简单性,可靠性和快速收敛性。

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