Architecture of a Cloud-based Fault-Tolerant Control Platform for improving the QoS of Social Multimedia Applications on SD-WAN

Kashinath Basu, Aws Hamdullah, F. Ball
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引用次数: 3

Abstract

Social media application are becoming multimedia centric with live and stored video, audio, augmented reality, haptic, etc. emerging as the main categories of traffic. Their QoS requirements are more stringent than their legacy counterparts. At the carrier level, Software Defined – Wide Area Network (SD-WAN) is one of the promising technologies for transporting these multimedia traffic. A SD-WAN will typically have a mesh of centralized controllers managing the networking infrastructure. Reliable operations of these controllers are a key requirement for the successful operation of the WAN. Controller failure will prevent the forwarding switches from communicating with the controller. This will prevent the switches from forwarding any new traffic, as well as flow entries from existing traffic will also time out after a period bringing the network to a standstill. Rebooting a controller or starting a new one will introduce delays degrading the QoS. This research presents an architecture for handling controller failure via transparent migration of the controller load in a semi-meshed controller environment. The architecture includes a real time cloud-based centralized storage of the flow states north of the controllers and a virtualized connection management unit at the south. The results demonstrate that the proposed model can transparently handle controller failure without affecting the QoS.
基于SD-WAN的社交多媒体应用服务质量改进的云容错控制平台体系结构
社交媒体应用正以多媒体为中心,实时和存储的视频、音频、增强现实、触觉等成为流量的主要类别。它们的QoS要求比它们的遗留对应物更严格。在运营商层面,软件定义广域网(SD-WAN)是传输这些多媒体流量的一种很有前途的技术。SD-WAN通常会有一组集中的控制器来管理网络基础设施。这些控制器的可靠运行是广域网成功运行的关键要求。控制器故障将导致转发交换机无法与控制器进行通信。这将阻止交换机转发任何新的流量,并且来自现有流量的流条目也将在一段时间后超时,使网络陷入停顿。重新启动一个控制器或启动一个新的控制器将引入延迟,降低QoS。本研究提出一种在半网格控制器环境下,透过透明的控制器负载迁移来处理控制器故障的架构。该体系结构包括控制器北部的流状态的基于云的实时集中存储和南部的虚拟化连接管理单元。结果表明,该模型能够在不影响QoS的情况下透明地处理控制器故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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