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Design of bandwidth guaranteed OpenFlow virtual networks using robust optimization

机译:使用稳健的优化设计保证带宽的OpenFlow虚拟网络

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In this paper, we address the OpenFlow virtual network (VN) design problem. Unlike most of the existing approaches that directly performing bandwidth slicing on the physical networks, we take traffic uncertainly and statistical multiplexing into consideration. In our system, a user can specify the desired VN topology and the capacity for each virtual link (VL). The bandwidth descriptor for a VL consists of a pair of values for guaranteed bandwidth and upper limit bandwidth. Each user is guaranteed to own the guaranteed bandwidth at any moment without interferences from the bandwidth usages of the other users. Moreover, a user can successfully uses bandwidth up to its upper limit in short time with packet loss probability no more than a pre-defined value. This feature enables OpenFlow networks to provide QoS for network services with bursty traffic. We model this problem as a robust optimization program to jointly determine admission control for VN and routing for VL. We further present an approach for implementing the proposed design using commercial available OpenFlow switches. The performance of the proposed approach is evaluated through simulations and experiments. The results indicate that the proposed design can successfully tolerate traffic uncertainly in OpenFlow networks. Since the proposed approach can use bandwidth with high efficiency, it can admit more VNs than the one without taking statistical multiplexing into consideration.
机译:在本文中,我们解决了OpenFlow虚拟网络(VN)设计问题。与大多数直接在物理网络上执行带宽切片的现有方法不同,我们不确定地考虑流量并考虑统计复用。在我们的系统中,用户可以指定所需的VN拓扑以及每个虚拟链路(VL)的容量。 VL的带宽描述符由一对用于保证带宽和上限带宽的值组成。保证每个用户随时拥有保证的带宽,而不会受到其他用户带宽使用的干扰。此外,用户可以在短时间内成功使用带宽上限的带宽,而丢包概率不超过预定值。此功能使OpenFlow网络能够为具有突发流量的网络服务提供QoS。我们将此问题建模为一个健壮的优化程序,以共同确定VN的准入控制和VL的路由。我们进一步提出了一种使用商用OpenFlow交换机来实现建议设计的方法。通过仿真和实验评估了所提出方法的性能。结果表明,提出的设计可以成功地容忍OpenFlow网络中的流量不确定性。由于所提出的方法可以高效地使用带宽,因此与不考虑统计多路复用的方法相比,它可以接纳更多的VN。

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