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Demonstration of Flexible Optical Network Based on Path Computation Element

机译:基于路径计算元素的柔性光网络演示

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摘要

Flexible optical networks, based on bandwidth-variable optical cross-connects (BV-OXCs) and novel flexible transponders, are expected to significantly improve the overall spectrum efficiency with respect to traditional networks where fixed frequency spacing is applied. Flexible optical networks will exploit the BV-OXC capability to dynamically configure the reserved bandwidth as a set of frequency slots. In addition, flexible transponders will be employed to dynamically configure transmission parameters, such as bit-rate and modulation format. To enable these new configuration capabilities, network operation enhancements need to be efficiently introduced and investigated. In this study, we focus for the first time on the Path Computation Element (PCE) architecture for flexible optical networks. PCE architecture and PCE communication protocol are enhanced to maximize the spectral efficiency and to provide indications also on the specific transmission parameters to configure. Experimental demonstration is provided through two different experiments, successfully showing the PCE capability to trigger dynamic rerouting with bit-rate or modulation format adaptation. In particular, the experiments demonstrate, in a real testbed, dynamic frequency slot assignment and format adaptation from DP-16QAM to DP-QPSK at 100 Gb/s, and bit-rate adaptation at DP-16QAM from 200 Gb/s to 100 Gb/s.
机译:相对于采用固定频率间隔的传统网络,基于带宽可变光交叉连接(BV-OXC)的灵活光网络和新型灵活应答器有望显着提高整体频谱效率。灵活的光网络将利用BV-OXC功能将预留的带宽动态配置为一组时隙。另外,将采用灵活的应答器来动态配置传输参数,例如比特率和调制格式。为了启用这些新的配置功能,需要有效地引入和研究网络操作增强功能。在本研究中,我们首次将重点放在柔性光网络的路径计算元素(PCE)架构上。增强了PCE体系结构和PCE通信协议,以最大程度地提高频谱效率,并提供有关要配置的特定传输参数的指示。通过两个不同的实验提供了实验演示,成功展示了PCE能够触发具有比特率或调制格式自适应的动态重路由。尤其是,这些实验在真实的测试台上演示了动态频率时隙分配和从DP-16QAM到DP-QPSK在100 Gb / s的格式自适应,以及DP-16QAM在200 Gb / s到100 Gb的比特率自适应。 / s。

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