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Efficient topology discovery in software defined networks

机译:软件定义网络中的高效拓扑发现

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Software Defined Networking (SDN) is a new networking paradigm, with a great potential to increase network efficiency, ease the complexity of network control and management, and accelerate the rate of technology innovation. One of the core concepts of SDN is the separation of the network's control and data plane. The intelligence and the control of the network operation and management, such as routing, is removed from the forwarding elements (switches) and is concentrated in a logically centralised component, i.e. the SDN controller. In order for the controller to configure and manage the network, it needs to have up-to-date information about the state of the network, in particular its topology. Consequently, topology discovery is a critical component of any Software Defined Network architecture. In this paper, we evaluate the cost and overhead of the de facto standard approach to topology discovery currently implemented by the major SDN controller frameworks, and propose simple and practical modifications which achieve a significantly improved efficiency and reduced control overhead. We have implemented our new topology discovery approach on the widely used POX controller platform, and have evaluated it for a range of network topologies via experiments using the Mininet network emulator. Our results show that our proposed modifications achieve an up to 45% reduction in controller load compared to the current state-of-the-art approach, while delivering identical discovery functionality.
机译:软件定义网络(SDN)是一种新的网络范例,具有极大的潜力来提高网络效率,减轻网络控制和管理的复杂性并加快技术创新的速度。 SDN的核心概念之一是网络控制平面和数据平面的分离。网络操作和管理的智能和控制(例如路由)已从转发元素(交换机)中删除,并集中在逻辑上集中的组件(即SDN控制器)中。为了使控制器能够配置和管理网络,它需要具有有关网络状态(尤其是其拓扑结构)的最新信息。因此,拓扑发现是任何软件定义网络体系结构的关键组成部分。在本文中,我们评估了当前由主要SDN控制器框架实施的事实上的标准拓扑发现方法的成本和开销,并提出了简单实用的修改方法,这些方法可显着提高效率并减少控制开销。我们已经在广泛使用的POX控制器平台上实现了新的拓扑发现方法,并通过使用Mininet网络仿真器进行的实验对各种网络拓扑进行了评估。我们的结果表明,与当前的最新方法相比,我们提出的修改可将控制器负载减少多达45%,同时提供相同的发现功能。

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