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RTSM: Response time optimisation during switch migration in software-defined wide area network

机译:RTSM:软件定义广域网中交换机迁移期间的响应时间优化

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摘要

The distributed control plane is the alternate solution to reliability and scalability like potential issues in the software-defined wide area network (SDWAN), but the static mapping between controller and switches might cause an uneven load distribution among controllers. Migration of switches from one controller to another under-loaded controller is a solution to handle the peak traffic. However, the switch migration process is a complex process that may affect the end-user quality of service (QoS), as a result, the response time of the control messages are also affected. To address this issue, the authors present RTSM, a novel strategy, that optimises the response time of the control messages during switch migration. Further, an SDWAN architecture was proposed, in which the introduction of the layer-2 controller reduces the dependency on WAN communication of the forwarding devices. The Karush-Kuhn-Tucker conditions have been applied for target controller selection, which ensures improved response time. A switch selection method was also introduced, which minimally affects the end-user QoS during device migration in SDWAN scenario. To evaluate the performance of the RTSM, Mininet simulator with the Floodlight controller has been used, and the result shows that the proposed algorithm outperforms the other existing works during load balancing.
机译:分布式控制平面是对软件定义的广域网(SDWAN)中的潜在问题的可靠性和可伸缩性的替代解决方案,但控制器和交换机之间的静态映射可能会导致控制器之间的不均匀负载分布。将交换机从一个控制器迁移到另一个欠加载的控制器是处理峰值流量的解决方案。然而,交换机迁移过程是一个复杂的过程,可能影响服务的最终用户质量(QoS),结果,控制消息的响应时间也受到影响。为了解决这个问题,作者呈现RTSM,一种新颖的策略,可以在交换机迁移期间优化控制消息的响应时间。此外,提出了一种SDWAN架构,其中图2控制器的引入降低了对转发设备的WAN通信的依赖性。 Karush-Kuhn-Tucker条件已应用于目标控制器选择,这确保了改进的响应时间。还引入了交换机选择方法,其在SDWAN场景中的设备迁移期间最终影响最终用户QoS。为了评估RTSM的性能,已经使用了具有泛光灯控制器的MinInet模拟器,结果表明,所提出的算法在负载平衡期间优于其他现有工作。

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