Kumori:引导ixp的云流量以提高弹性

Antoine Fressancourt, C. Pelsser, M. Gagnaire
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引用次数: 2

摘要

经过几年的初期发展,云服务现在已经足够成熟,可以用来交付越来越多的关键服务。为了确保这些服务能够承受故障事件,主要的云服务提供商(csp)将其平台部署在远程数据中心。用于连接这些数据中心的框架在大多数情况下供应过多,管理成本很高。在本文中,我们提出了“Kumori”,这是一种基于sdn的覆盖架构,旨在让csp重新控制其数据中心间连接。使用iPlane数据集,我们将我们的架构与弹性覆盖网络(RON)进行了比较,RON被认为是过去十年中互联网弹性的开创性项目。我们的结果表明,根据CSP的大小和连接策略,我们的架构要么在延迟方面提供比RON短得多的路径,要么在覆盖节点数量方面使用更小的覆盖提供类似的服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kumori: Steering Cloud traffic at IXPs to improve resiliency
After a few years of infancy, Cloud services have now gained enough maturity to be used to deliver an increasing number of critical services. To ensure the capacity of those services to survive failure events, major Cloud Services Providers (CSPs) deploy their platform in distant datacenters. The framework used to interconnect those datacenters is most of the time over-provisioned and costly to manage. In this paper, we present “Kumori”, a SDN-based overlay architecture designed to give CSPs back control on their inter-datacenter connectivity. Using the iPlane dataset, we compare our architecture with the Resilient Overlay Network (RON), considered as a seminal project on Internet resiliency for the last ten years. Our results show that, depending on the CSP's size and connectivity strategy, our architecture either gives significantly shorter paths than RON in terms of latency or provides a similar service using a smaller overlay in terms of number of overlay nodes.
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