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Software-Defined Networking: Challenges and research opportunities for Future Internet

机译:软件定义的网络:未来互联网的挑战和研究机会

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摘要

Currently many aspects of the classical architecture of the Internet are etched in stone - a so called ossification of the Internet - which has led to major obstacles in IPv6 deployment and difficulty in using IP multicast services. Yet, there exist many reasons to extend the Internet, e.g., for improving intra-domain and inter-domain routing for high availability of the network, providing end-to-end connectivity for users, and allowing dynamic QoS management of network resources for new applications, such as data center, cloud computing, and network virtualization. To address these requirements, the next-generation architecture for the Future Internet has introduced the concept of Software-Defined Networking (SDN). At the core of this emerging paradigm is the separation and centralization of the control plane from the forwarding elements in the network as opposed to the distributed control plane of existing networks. This decoupling allows deployment of control plane software components (e.g., OpenFlow controller) on computer platforms that are much more powerful than traditional network equipment (e.g., switches/routers) while protecting the data and intellectual property of the vendors of such equipment.
机译:当前,Internet的经典体系结构的许多方面都是刻板的-所谓的Internet僵化-导致IPv6部署中的主要障碍和IP多播服务的使用困难。但是,存在许多扩展Internet的理由,例如,为了提高网络的高可用性而改进域内和域间路由,为用户提供端到端连接,并允许对新的网络资源进行动态QoS管理。应用程序,例如数据中心,云计算和网络虚拟化。为了满足这些要求,下一代Internet的下一代体系结构引入了软件定义网络(SDN)的概念。这种新兴范式的核心是控制平面与网络中转发元素的分离和集中,而不是现有网络的分布式控制平面。这种解耦允许在比传统网络设备(例如,交换机/路由器)更强大的计算机平台上部署控制平面软件组件(例如,OpenFlow控制器),同时保护这种设备的卖方的数据和知识产权。

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