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Fairness-oriented overlay VPN topology construction

机译:面向公平的覆盖VPN拓扑构建

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摘要

An important issue in dynamically constructed Virtual Private Networks (VPN) is how the overlay topology is created and maintained. Classical VPN topologies, such as hub-and-spoke or full-mesh, fail to remain convenient and viable when the number of nodes grows to as little as a few tens. Convenient topology formation mechanisms should be distributed, should permit incremental and dynamic operations, and should limit the number of nodes a new entry connects with. In this work, we show that approaches devised to create “short” networks, while yielding a significant total network throughput, may be severely affected by unfairness issues, i.e., different pair of nodes may experience a widely different throughput performance. Hence, we introduce a fairness-oriented topology formation algorithm for VPN. The proposed algorithm is incremental, meaning that the addition of a new node to the overlay topology does not imply rewiring of already established overlay links. Simulation results show that our proposed approach achieves high fairness levels, as quantified in terms of well known Jain's fairness index, meanwhile retaining satisfactory throughput performance.
机译:动态构建的虚拟专用网(VPN)中的一个重要问题是如何创建和维护覆盖拓扑。当节点数增加到几十个时,传统的VPN拓扑(例如中心辐射型或全网状)无法保持方便和可行。方便的拓扑结构形成机制应予以分发,应允许增量和动态操作,并应限制新条目所连接的节点数量。在这项工作中,我们表明,旨在创建“短”网络的方法虽然会产生很大的总网络吞吐量,但可能会受到不公平问题的严重影响,即,不同的节点对可能会经历非常不同的吞吐量性能。因此,我们介绍了一种面向公平性的VPN拓扑形成算法。所提出的算法是增量式的,这意味着向覆盖拓扑添加新节点并不意味着重新布线已建立的覆盖链接。仿真结果表明,我们提出的方法达到了很高的公平性水平(以众所周知的Jain公平性指标进行量化),同时保持了令人满意的吞吐量性能。

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