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Optimal customer provisioning in network-based mobile VPNs

机译:基于网络的移动VPN中的最佳客户配置

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A virtual private network (VPN) is an overlay network that uses the public network to carry data traffic between corporate sites and users, maintaining privacy through the use of tunnelling protocols and security procedures. In the network-based model, VPN-aware network elements are placed within the network to set up concatenated tunnels between the user/site and enterprise resources to offer intranet VPN and remote access VPN. This paper identifies the important differences between a traditional VPN and the mobile VPN and proposes a hierarchical network architecture to efficiently realize network-based mobile VPNs. We address the problem of optimally provisioning VPN-aware devices, called IP service gateways (IPSGs), in the hierarchical network architecture for mobile VPNs, while taking into account of (1) the cost of links over which VPN tunnels are established, (2) the cost of provisioning a VPN customer on an IPSG, and (3) redundancy in IPSG provisioning for fault tolerance. We develop generic yet powerful problem formulations for different scenarios described above while considering practical requirements of the network elements and business requirements of the VPN service provider. The formulation becomes a set of integer programming problems. We solve several instances of the problem for a few practical cases and discuss their applications in the overall network design.
机译:虚拟专用网络(VPN)是一种覆盖网络,使用公共网络在公司站点和用户之间传输数据流量,并通过使用隧道协议和安全性程序来维护隐私。在基于网络的模型中,将支持VPN的网络元素放置在网络内,以在用户/站点和企业资源之间建立连接的隧​​道,以提供Intranet VPN和远程访问VPN。本文指出了传统VPN与移动VPN之间的重要区别,并提出了一种分层网络架构来有效地实现基于网络的移动VPN。我们在考虑(1)建立VPN隧道的链接成本时,解决了在移动VPN的分层网络体系结构中以最佳方式配置可识别VPN的设备(称为IP服务网关(IPSG))的问题。 )在IPSG上配置VPN客户的成本,以及(3)IPSG设置中的冗余以实现容错功能。我们在考虑网络元素的实际需求和VPN服务提供商的业务需求的同时,针对上述不同情况开发了通用但功能强大的问题表述。公式化成为一组整数编程问题。我们针对一些实际案例解决了该问题的多个实例,并讨论了它们在整个网络设计中的应用。

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