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Evolving Traffic Grooming in Multi-Layer Flexible-Grid Optical Networks With Software-Defined Elasticity

机译:具有软件定义的弹性的多​​层柔性网格光网络中不断发展的流量整理

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Recently, flexible grid and elastic-rate transponders have emerged as evolutionary technologies to satisfy the ever-increasing demand for higher spectrum efficiency and operational flexibility. In this study, we first briefly review the evolution of traffic grooming from SONET/SDH to currently-deployed WDM networks, and summarize the essence of the current traffic-grooming paradigm based on electronic circuit or packet switching and multi-layer collaboration. Then, the role of traffic grooming in flexible-grid and elastic-rate optical networks is re-examined. The impact of some new optical-layer technologies on traffic-grooming paradigm is discussed. Particularly, sliceable optical layer based on sliceable transponders and BV-ROADM is identified as a novel technology that could impact the future grooming paradigm by offloading considerable amount of traffic and part of electronic grooming function to the optical layer. We propose two novel network architectures based on sliceable optical layer and numerically compare them with the traditional packet-over-optical network architecture. It is found that packet-over-sliceable network architecture consumes the fewest transponders and at the same time achieves either the “lowest-possible” latency or least spectrum usage. Finally, traffic grooming, which involves multi-layer resource orchestration, should be controlled by software with a centralized view of the network to accommodate the dynamic requirements of applications.
机译:近来,柔性网格和弹性速率应答器已经成为一种演进技术,以满足对更高频谱效率和操作灵活性不断增长的需求。在这项研究中,我们首先简要回顾一下流量梳理从SONET / SDH到当前部署的WDM网络的发展,并总结了基于电子电路或数据包交换和多层协作的当前流量梳理范例的本质。然后,重新研究了流量疏导在柔性网格和弹性速率光网络中的作用。讨论了一些新的光学层技术对流量梳理范式的影响。特别地,基于可切片应答器和BV-ROADM的可切片光学层被认为是一种新颖的技术,可以通过将大量流量和部分电子修饰功能卸载到光学层来影响未来的修饰范例。我们提出了两种基于可切片光层的新颖网络架构,并将它们与传统的基于数据包的光网络架构进行了数值比较。发现可分片分组的网络体系结构消耗最少的转发器,同时达到“最低可能”的延迟或最低的频谱使用率。最后,涉及多层资源编排的流量疏导应由具有网络集中视图的软件控制,以适应应用程序的动态需求。

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