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Routing Stability in Hybrid Software-Defined Networks

机译:混合软件定义网络中的路由稳定性

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Software-defined networks (SDNs) facilitate more efficient routing of traffic flows using centralized network view. On the other hand, traditional distributed routing still enjoys the advantage of better scalability, robustness, and swift reaction to events such as failure. There are therefore significant potential benefits to adopt a hybrid operation where both distributed and centralized routing mechanisms co-exist. This hybrid operation however imposes a new challenge to network stability since a poor and inconsistent design can lead to repeated route switching when the two control mechanisms take turns to adjust the routes. In this paper, we discuss ways of solving the stability problem. We first define stability for hybrid SDNs and then establish a per-priority stabilizing framework to obtain stable routing patterns. For each priority class, we discuss three approaches to reach hybrid SDN stability: global optimization, greedy, and local search. It is argued that the proposed local search provides the best tradeoff among cost performance, computational complexity, and route disturbance. Furthermore, we design a system on a centralized controller, which utilizes those algorithms to stabilize the network. The design is implemented and extensively tested by simulations using realistic network information, including a trace of the Abilene network and data from a tier-1 Internet service providers backbone network.
机译:使用集中式网络视图,软件定义的网络(SDNS)有助于更有效的流量流量路由。另一方面,传统的分布式路由仍然具有更好的可扩展性,稳健性和迅速反应的优势对失败的事件。因此,采用混合动力运算存在显着的潜在好处,其中分布式和集中式路由机制共存。然而,这种混合操作对网络稳定性对网络稳定性产生了新的挑战,因为当两个控制机制轮流调整路线时,可以导致重复的路线切换。在本文中,我们讨论了解决稳定问题的方法。我们首先定义混合动力SDN的稳定性,然后建立一个优先级稳定框架以获得稳定的路由模式。对于每个优先级,我们讨论了达到混合SDN稳定性的三种方法:全球优化,贪婪和本地搜索。有人认为,所提出的本地搜索在成本性能,计算复杂性和路由干扰方面提供了最佳权衡。此外,我们在集中控制器上设计系统,该系统利用这些算法稳定网络。使用现实网络信息,通过模拟实现和广泛测试设计,包括来自一级互联网服务提供商骨干网络的亚尖网络和数据的迹象。

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