软件定义的抗灾广域网网络方法

K. Nguyen, Q. Minh, S. Yamada
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引用次数: 41

摘要

目前的互联网技术在正常运行中提供了可接受的弹性水平。然而,当地震、海啸等意外灾害发生时,互联网可能会受到灾难性的影响。具体而言,包括广域网(wan)在内的互联网基础设施面临着断电、链路、设备故障、数据包重路由、流量工程等诸多正常运行的挑战。在本文中,我们采用了一种使用软件定义网络(SDN)技术实现抗灾广域网的系统方法。SDN使网络控制平面与网络转发硬件解耦,并将控制平面移动到可编程组件,即网络控制器上。从而增加了网络管理和操作的灵活性。为了验证基于sdn的弹性网络实现快速容灾的可行性,我们在真实的大规模网络拓扑下构建了两个评估。一是研究控制器和开关之间的延迟,以便找到适当的控制器数量和位置。另一种是模拟从故障链接到替代链接的反应性切换,假设一个现实的场景。结果表明,切换时间取决于网络设备与控制器之间的延迟。此外,即使这些延迟值等于最坏情况延迟,也可以实现TCP流量的快速重路由。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Software-Defined Networking Approach for Disaster-Resilient WANs
The current technology of Internet provides an acceptable level of resilience in normal operation. However, the Internet may get catastrophic impacts when unexpected disasters such as earthquakes, tsunami, etc. happen. Specifically, the Internet infrastructure including Wide Area Networks (WANs) face many challenges to normal operation including power outage, link, device failures, rerouting packets, traffic engineering, etc. In this paper, we follow a systematic approach for realizing disaster-resilient WANs using Software-Defined Networking (SDN) technology. SDN enables the network control plane to be decoupled from the network forwarding hardware, and moves the control plane to a programmable component, i.e., the network controller. The network management and operation therefore increase flexibility. To confirm the feasibility of SDN-based resilient network towards fast disaster recovery, we have constructed two evaluations under the real large scale network topology. One is to investigate the latencies between controllers and switches in order to find the appropriate number and locations of controllers. Another one is to simulate a reactive switch-over from a faulty link to an alternative link, assuming a realistic scenario. The results show that the switch-over time depends on the latencies between networking devices and a controller. Additionally, even those latency values equal the worst-case latency, the fast rerouting of TCP traffic is achievable.
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