论文标题

外星人访问链接的动态光路供应:建筑,演示和挑战

Dynamic optical path provisioning for alien access links: architecture, demonstration, and challenges

论文作者

Nishizawa, Hideki, Sasai, Takeo, Inoue, Takeru, Anazawa, Kazuya, Mano, Toru, Kitamura, Kei, Sone, Yoshiaki, Inui, Tetsuro, Takasugi, Koichi

论文摘要

随着数据中心互连(DCI)和本地5G的传播,通过高容量光学链接在客户位置之间进行动态建立的连接的需求越来越大。但是,诸如信号功率概况和放大器收益之类的链接参数通常是未知的,必须由专家进行测量,从而防止由于耗时的手动测量而导致的动态路径配置。尽管已经提出了几种用于估计此类外星访问链接的未知参数的技术,但尚未提出架构和协议,这些架构和协议可以驱动估算技术以在客户位置之间建立光学路径。我们的研究旨在通过外星访问链接自动连接客户拥有的收发器,并以最佳的传输质量(QOT)连接。我们首先使用最新技术来估计链接参数,为客户和运营商之间的合作光路设计建筑和协议。然后,我们在软件定义的网络(SDN)控制器和White-box转发器中使用开放API实现了建议的协议。该实验表明,从收发器的冷启动中,通过外星人访问链路在137秒内通过外星访问链路动态建立了光路。最后,我们讨论使用此方法获得的QOT准确性以及其余问题。

With the spread of Data Center Interconnect (DCI) and local 5G, there is a growing need for dynamically established connections between customer locations through high-capacity optical links. However, link parameters such as signal power profile and amplifier gains are often unknown and have to be measured by experts, preventing dynamic path provisioning due to the time-consuming manual measurements. Although several techniques for estimating the unknown parameters of such alien access links have been proposed, no work has presented architecture and protocol that drive the estimation techniques to establish an optical path between the customer locations. Our study aims to automatically connect customer-owned transceivers via alien access links with optimal quality of transmission (QoT). We first propose an architecture and protocol for cooperative optical path design between a customer and carrier, utilizing a state-of-the-art technique for estimating link parameters. We then implement the proposed protocol in a software-defined network (SDN) controller and white-box transponders using an open API. The experiments demonstrate that the optical path is dynamically established via alien access links in 137 seconds from the transceiver's cold start. Lastly, we discuss the QoT accuracy obtained with this method and the remaining issues.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源