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Multi-Layer Service Provisioning Over Resilient Software-Defined Partially Disaggregated Networks

机译:在弹性软件定义的部分分列网络上提供多层服务配置

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摘要

The need of introducing interoperability in the transport network segment has motivated the emergence of several open initiatives and standardization efforts for the development of different interfaces to allow Software Defined Network (SDN) controllers manage and control the network devices. Optical disaggregation in particular aims the introduction of standard device-level interfaces in the optical terminals and line-systems to 'open' them from vendor lock-in situations, allowing an interoperable ecosystem in the optical network's transport segment. In this article, it is firstly presented the Software Defined Transport Network (SDTN) architecture, as the control and management framework to build a L0-L3 multi-layer, multi-technology transport network, enabling end-to-end network service delivery. Later, we introduce the partially disaggregated network architecture proposed, including the technical assessment of the topology discovery and resilience service provisioning use cases, by providing a low-level description of the information models employed and the translation between models. To conclude, a proof-of-concept of multi-layer service provisioning over resilient disaggregated multi-vendor testbed is presented, including the results obtained in the experimental demonstration presented in last 2019 Optical Fiber Conference (OFC).
机译:在传输网段中引入互操作性的需求具有若干公开计划的出现,用于开发不同接口的开放举措和标准化工作,以允许软件定义的网络(SDN)控制器管理和控制网络设备。特别是光学分解尤其旨在引入光学终端中的标准设备级接口和线系 - 从供应商锁定情况下“打开”它们,允许光学网络传输段中的可互操作的生态系统。在本文中,首先将软件定义的传输网络(SDTN)架构呈现为构建L0-L3多层,多技术传输网络的控制和管理框架,从而实现端到端的网络服务。后来,我们通过提供所采用的信息模型的低级描述和模型之间的转换来介绍所提出的部分分列的网络架构,包括拓扑发现和恢复服务供应使用情况的技术评估。为了得出结论,提出了在弹性分列的多供应商试验台上的多层服务提供的概念,包括在过去2019年光纤会议(OFC)的实验示范中获得的结果。

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