下一代WDM-PON接入系统的新控制平面

M. Gagnaire, M. Koubàa
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引用次数: 10

摘要

点对点或点对多点光接入系统现在被认为是宽带服务中xDSL技术的可行替代方案。点对多点wdm - pon是这方面最先进的解决方案。基于时分多址(TDMA)和波分多址(WDMA)混合模式的下一代WDM PON (NG-WDM-PON)已经提出了多种架构。为此,考虑了三个关键的光电器件:反射调制器,AWG(阵列波导光栅)路由器和可调谐收发器。该领域的研究主要集中在物理层和MAC协议方面。在本文中,我们提出了一个原始的NG-WDM-PON在微观和宏观两个时间尺度上运行的控制平面。前者处理传统的分组访问,而后者旨在实现两个目标。第一个目标是分配连接到上游光通道,以优化网络利用率。后者能够动态地将光通道的数量重新分配给系统的各种pon。为了说明这种控制平面的优点,给出了大量的数值结果。这样就有可能根据光学资源的中期活动在系统的各个地理区域之间转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new control plane for next-generation WDM-PON access systems
Point-to-point or point-to-multipoint optical access systems are now considered as a viable alternative to xDSL technologies for broadband services. Point-to-multipoint WDM-PONs are the most advanced solution in this matter. Multiple architectures have been proposed since a few years for Next Generation WDM PON (NG-WDM-PON) operating on an hybrid TDMA (Time Division Multiple Access) and WDMA (Wavelength Division Multiple Access) mode. For that purpose, three key optoelectronic devices are considered: reflective modulators, AWG (Arrayed Waveguide Gratings) routers and tunable transceivers. The major investigations in this domain are mainly focused on physical layer aspects and on MAC protocols. In this paper, we propose an original control plane for NG-WDM-PON operating at two timescales: microscopic and macroscopic. The former deals with traditional packet access whereas the latter aims at two objectives. The first objective is to assign connections to upstream optical channels in order to optimize network utilization. The latter enables to reallocate dynamically the number of optical channels to the various PONs of the system. Numerous numerical results are presented in order to outline the benefit of this control plane. It becomes then possible to shift optical resources among the various geographical areas of the system according to their medium term activity.
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