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Tunneling techniques for end-to-end VPNs: generic deployment in an optical testbed environment

机译:端到端VPN的隧道技术:在光学测试平台环境中的常规部署

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摘要

Service providers today are constantly seeking to offer multiple services on a single common infrastructure. For instance, it is desirable sometimes to provide transport services transparently to data traffic encapsulated over different network layers. Tunneling is a technique for encapsulating a packet or frame within another packet of the same or a different network layer. One of the motivations for tunneling is bridging various heterogeneous networks that use different protocols for communication. Tunneling is also used for providing private and secure communications over a publicly shared network. This article investigates the interactions between different tunneling technologies in order to provide end-to-end virtual connectivity to end clients. Particularly, the article describes the technical details of the implementation of various layer 2 tunneling techniques - such as L2TP, GRE, and MPLS-based tunnels - in order to establish an end-to-end virtual connection service as a concatenation of services offered by the different network domains along the path between end users.
机译:当今的服务提供商不断寻求在单个通用基础架构上提供多种服务。例如,有时需要对封装在不同网络层上的数据流量透明地提供传输服务。隧道传输是一种将数据包或帧封装在相同或不同网络层的另一个数据包中的技术。建立隧道的动机之一是桥接使用不同协议进行通信的各种异构网络。隧道还用于在公共共享的网络上提供私有和安全的通信。本文研究了不同隧道技术之间的交互,以便为最终客户端提供端到端的虚拟连接。特别是,本文介绍了各种第2层隧道技术(例如基于L2TP,GRE和MPLS的隧道)的实现技术细节,以建立端对端虚拟连接服务,作为由以下服务提供的服务的串联最终用户之间路径上的不同网络域。

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