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Multi-stratum resource integration for OpenFlow-based data center interconnect [invited]

机译:基于OpenFlow的数据中心互连的多层次资源集成[已邀请]

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摘要

Nowadays, most service providers offer their services and support their applications through federated sets of data centers that need to be interconnected using high-capacity telecom transport networks. To provide such high-capacity network channels, data center interconnection is typically based on IPand optical transport networks that ensure certain end-to-end connectivity performance guarantees. However, in the current mode of operation, the control of IP networks, optical networks, and data centers is separately deployed. Enabling even a limited interworking among these separated control systems requires the adoption of complex and inelastic interfaces among the various networks, and this solution is not efficient enough to provide the required quality of service. In this paper, we propose a multi-stratum resource integration (MSRI) architecture for OpenFlow-based data center interconnection using IP and optical transport networks. The control of the architecture is implemented through multiple OpenFlow controllers' cooperation. By exchanging information among multiple controllers, the MSRI can effectively overcome the interworking limitations of a multi-stratum architecture, enable joint optimization of data center and network resources, and enhance the data center responsiveness to end-to-end service demands. Additionally, a service-aware flow estimation strategy for MSRI is introduced based on the proposed architecture. The overall feasibility and efficiency of the proposed architecture are experimentally demonstrated on our optical as a service testbed in terms of blocking probability, resource occupation rate, and path provisioning latency.
机译:如今,大多数服务提供商通过需要使用大容量电信传输网络进行互连的联合数据中心集来提供服务并支持其应用程序。为了提供这样的大容量网络通道,数据中心互连通常基于IP和光传输网络,以确保某些端到端的连接性能保证。但是,在当前的操作模式下,将分别部署IP网络,光网络和数据中心的控制。要在这些分离的控制系统之间实现有限的互通,就需要在各种网络之间采用复杂且无弹性的接口,并且该解决方案的效率不足以提供所需的服务质量。在本文中,我们为使用IP和光传输网络的基于OpenFlow的数据中心互连提出了一种多层次资源集成(MSRI)架构。通过多个OpenFlow控制器的协作来实现体系结构的控制。通过在多个控制器之间交换信息,MSRI可以有效地克服多层次体系结构的互通限制,实现数据中心和网络资源的联合优化,并增强数据中心对端到端服务需求的响应能力。此外,基于提出的体系结构,介绍了MSRI的服务感知流量估计策略。在阻塞即概率,资源占用率和路径供应等待时间方面,在我们的光纤即服务测试平台上通过实验证明了所提出架构的整体可行性和效率。

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