Splicing MPLS and OpenFlow Tunnels Based on SDN Paradigm

Xiaogang Tu, Xin Li, Jiangang Zhou, Shanzhi Chen
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引用次数: 10

Abstract

Software-defined networking has emerged as a promising solution for supporting dynamic network functions and intelligent applications through decoupling control plane from forwarding plane. OpenFlow is the first standardized open management interface of SDN architecture. But it is unrealistic to simply swaping out conventional networks for new infrastructure. How to integrate OpenFlow with existing networks is still a serious challenge. We propose a tunnel splicing mechanism for heterogeneous network with MPLS and OpenFlow routers. Two key mechanisms were suggested: first, abstract the underlying network devices into uniformed nodes in order to shield the details of various equipments, second, strip the manipulation of flow table and lable switch table from controller and fulfill it in an independent module. This new paradigm has been developed on Linux system and tests have been carried out in experiment networks. The emulation results proved its feasibility and efficiency.
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基于SDN模式的MPLS和OpenFlow隧道拼接
软件定义网络通过将控制平面与转发平面解耦,成为支持动态网络功能和智能应用的一种很有前途的解决方案。OpenFlow是SDN架构第一个标准化的开放管理接口。但是简单地把传统网络换成新的基础设施是不现实的。如何将OpenFlow与现有网络集成仍然是一个严峻的挑战。提出了一种基于MPLS和OpenFlow路由器的异构网络隧道拼接机制。提出了两个关键机制:一是将底层网络设备抽象为统一的节点,以屏蔽各种设备的细节;二是将流量表和标签切换表的操作从控制器中剥离出来,在一个独立的模块中完成。这个新范例已在Linux系统上开发,并在实验网络中进行了测试。仿真结果证明了该方法的可行性和有效性。
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