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On Layered VPN architecture for Enabling User-Based Multiply Associated VPNs

机译:用于启用基于用户的多关联VPN的分层VPN体系结构

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摘要

In our previous work, we have proposed a new VPN architecture for enabling user-based multiply associated VPNs. Almost all existing VPN technologies assume that users never simultaneously access more than a single VPN. Thus, for realizing a new VPN service allowing users to simultaneously join multiple VPNs, several fundamental mechanisms, such as dynamically changing user's VPN association status according to the user's request and authorizing user's access to a group of VPNs, are required. In this paper, we propose a layered VPN architecture for realizing user-based multiply associated VPN. Our layered VPN architecture consists of three network levels such as PNL (Physical Network Level), LNL (Logical Network Level), and UNL (User Network Level). First, we discuss and classify functions required for each network level. We then present several approaches for implementing each network level using existing layer 2, 3, and 4 networking technologies, and quantitatively evaluate their advantages and disadvantages from several viewpoints including scalability and transmission speed.
机译:在我们以前的工作中,我们提出了一种新的VPN架构,用于启用基于用户的多重关联VPN。几乎所有现有的VPN技术都假定用户永远不会同时访问多个VPN。因此,为了实现允许用户同时加入多个VPN的新VPN服务,需要几种基本机制,例如根据用户的请求动态更改用户的VPN关联状态以及授权用户访问一组VPN。在本文中,我们提出了一种分层的VPN体系结构,用于实现基于用户的多重关联的VPN。我们的分层VPN架构包含三个网络级别,例如PNL(物理网络级别),LNL(逻辑网络级别)和UNL(用户网络级别)。首先,我们讨论并分类每个网络级别所需的功能。然后,我们介绍了几种使用现有的第2、3和4层网络技术实现每个网络级别的方法,并从包括可伸缩性和传输速度在内的多个角度定量评估了它们的优缺点。

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