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Virtualization of disaggregated optical networks with open data models in support of network slicing

机译:使用开放数据模型对分解的光网络进行虚拟化,以支持网络切片

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Network slicing has been a major selling point of 5G networks, where a slice is roughly defined as a self-contained logical network on top of a shared infrastructure tailored for a specific service or vertical industry, composed of heterogeneous resources (computing, storage, bandwidths) and typically involving specific application and/or networking functions. The relationship between the network slicing and the underlying network virtualization is an open research topic, allowing multiple deployment models. In particular, a specific model of interest involves the virtualization of the optical infrastructure, where optical virtual networks are instantiated in support of network slicing, so the virtual network underlies and provides connectivity to component functions of a network slice. In this paper, we propose and implement a network virtualization architecture for open optical (partially) disaggregated networks, based on the concept of a device hypervisor relying on OpenROADM data models, in support of 5G network slicing over interconnected network function virtualization infrastructure points of presence (NFVI-PoPs). The architecture is experimentally validated, showing the provisioning of ITU-T flexigrid network media channels across a virtualized network. (C) 2019 Optical Society of America
机译:网络切片一直是5G网络的主要卖点,其中切片被粗略地定义为在为特定服务或垂直行业量身定制的共享基础架构之上的独立逻辑网络,该基础架构由异构资源(计算,存储,带宽)组成),并且通常涉及特定的应用程序和/或网络功能。网络切片与基础网络虚拟化之间的关系是一个开放的研究主题,它允许多种部署模型。特别地,感兴趣的特定模型涉及光学基础架构的虚拟化,在该虚拟基础架构中实例化了光学虚拟网络以支持网络切片,因此虚拟网络是基础,并提供了与网络切片的组件功能的连接性。在本文中,我们基于依靠OpenROADM数据模型的设备管理程序的概念,为开放式光(部分)分解网络提出并实现了一种网络虚拟化架构,以支持在互连的网络功能虚拟化基础设施存在点上进行5G网络切片(NFVI-PoP)。该架构已通过实验验证,显示了跨虚拟化网络的ITU-T弹性网络媒体通道的配置。 (C)2019美国眼镜学会

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