Dynamic bandwidth and wavelength allocation with coexistence of transmission technologies in TWDM PONs

A. Buttaboni, M. De Andrade, M. Tornatore
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引用次数: 5

Abstract

In a Passive Optical Network (PON), the possibility of smooth upgrading the network infrastructure is an important requirement for network providers as it allows to minimize initial investments for networks deployment. During the upgrade process, it is expected a coexistence of new and old end-users, i.e., Optical Network Units (ONU), with diverse transceiver technologies. Our work focuses on the scenario where the network is upgraded from a TDM PON to a hybrid WDM/TDM PON (both short-reach and long-reach), and where the transceivers used in the old TDM PON can coexist with the new transceivers adopted in the hybrid WDM/TDM PON. In this work, we propose new Dynamic Bandwidth and Wavelength Allocation (DBWA) algorithms that solve the problem of managing the traffic originated by end-user transceivers with different characteristics. Specifically, in this paper we focus on the case of transceivers characterized by different tuning time. To investigate the importance of a DBWA which can specifically manage the traffic originated by transceivers with different tuning time, we also compare them to DBWAs which are not aware that different transmission technologies with different requirements coexist in the network. Finally, we test these DBWAs in different network scenarios (e.g., short-reach (PON) and long-reach (LR-PON) scenarios), and discuss what are the network parameters that mostly affect the algorithms performance.
TWDM pon中传输技术共存的动态带宽和波长分配
在无源光网络(PON)中,平滑升级网络基础设施的可能性是网络提供商的重要要求,因为它可以最大限度地减少网络部署的初始投资。在升级过程中,预计新旧终端用户共存,即光网络单元(ONU),具有多种收发器技术。我们的工作重点是网络从TDM PON升级到WDM/TDM混合PON(包括短距离和长距离)的场景,并且旧TDM PON中使用的收发器可以与混合WDM/TDM PON中采用的新收发器共存。在这项工作中,我们提出了新的动态带宽和波长分配(DBWA)算法,以解决管理具有不同特性的终端用户收发器产生的流量问题。具体地说,本文重点讨论了具有不同调谐时间特征的收发器的情况。为了研究能够专门管理不同调优时间收发器产生的流量的DBWA的重要性,我们还将它们与不知道网络中存在不同需求的不同传输技术的DBWA进行了比较。最后,我们在不同的网络场景(例如,短距离(PON)和长距离(LR-PON)场景)中测试了这些dbwa,并讨论了哪些网络参数对算法性能的影响最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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